Belyaev, Mikhail A. Causal explicit algorithm for heat conduction in a plasma. (English) Zbl 07763776 Comput. Phys. Commun. 294, Article ID 108934, 13 p. (2024). MSC: 82-XX 35-XX PDF BibTeX XML Cite \textit{M. A. Belyaev}, Comput. Phys. Commun. 294, Article ID 108934, 13 p. (2024; Zbl 07763776) Full Text: DOI
Kumar, Kirtee; Prasad, Vinod Control of correlation using confinement in case of quantum system. (English) Zbl 07772746 Ann. Phys., Berlin 535, No. 10, Article ID 2300166, 17 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{K. Kumar} and \textit{V. Prasad}, Ann. Phys., Berlin 535, No. 10, Article ID 2300166, 17 p. (2023; Zbl 07772746) Full Text: DOI
Huang, Jin; Ji, Guanghua Error estimates of the sav method for the coupled Cahn-Hilliard system in copolymer/homopolymer mixtures. (English) Zbl 07772405 Commun. Math. Sci. 21, No. 7, 1895-1916 (2023). MSC: 35Q35 65M12 65N35 76-XX PDF BibTeX XML Cite \textit{J. Huang} and \textit{G. Ji}, Commun. Math. Sci. 21, No. 7, 1895--1916 (2023; Zbl 07772405) Full Text: DOI
Nunez, Carlos; Oyarzo, Marcelo; Stuardo, Ricardo Confinement in \((1 + 1)\) dimensions: a holographic perspective from I-branes. (English) Zbl 07754780 J. High Energy Phys. 2023, No. 9, Paper No. 201, 58 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{C. Nunez} et al., J. High Energy Phys. 2023, No. 9, Paper No. 201, 58 p. (2023; Zbl 07754780) Full Text: DOI arXiv OA License
Yamada, Masaki; Yonekura, Kazuya Dark baryon from pure Yang-Mills theory and its GW signature from cosmic strings. (English) Zbl 07754776 J. High Energy Phys. 2023, No. 9, Paper No. 197, 19 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{M. Yamada} and \textit{K. Yonekura}, J. High Energy Phys. 2023, No. 9, Paper No. 197, 19 p. (2023; Zbl 07754776) Full Text: DOI arXiv OA License
Delmastro, Diego; Gomis, Jaume RG flows in 2d QCD. (English) Zbl 07754737 J. High Energy Phys. 2023, No. 9, Paper No. 158, 49 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{D. Delmastro} and \textit{J. Gomis}, J. High Energy Phys. 2023, No. 9, Paper No. 158, 49 p. (2023; Zbl 07754737) Full Text: DOI arXiv OA License
Hayata, Tomoya; Hidaka, Yoshimasa \(q\) deformed formulation of Hamiltonian SU(3) Yang-Mills theory. (English) Zbl 07754702 J. High Energy Phys. 2023, No. 9, Paper No. 123, 24 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{T. Hayata} and \textit{Y. Hidaka}, J. High Energy Phys. 2023, No. 9, Paper No. 123, 24 p. (2023; Zbl 07754702) Full Text: DOI arXiv OA License
Yang, Jiayue; Frey, Andrew R. Complexity, scaling, and a phase transition. (English) Zbl 07754608 J. High Energy Phys. 2023, No. 9, Paper No. 29, 19 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{J. Yang} and \textit{A. R. Frey}, J. High Energy Phys. 2023, No. 9, Paper No. 29, 19 p. (2023; Zbl 07754608) Full Text: DOI arXiv
Burby, J. W.; MacKay, R. S.; Naik, S. Isodrastic magnetic fields for suppressing transitions in guiding-centre motion. (English) Zbl 07749175 Nonlinearity 36, No. 11, 5884-5954 (2023). MSC: 37N99 37J46 PDF BibTeX XML Cite \textit{J. W. Burby} et al., Nonlinearity 36, No. 11, 5884--5954 (2023; Zbl 07749175) Full Text: DOI arXiv OA License
Bajeot, Stephane; Benvenuti, Sergio; Sacchi, Matteo S-confining gauge theories and supersymmetry enhancements. (English) Zbl 07748917 J. High Energy Phys. 2023, No. 8, Paper No. 42, 50 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{S. Bajeot} et al., J. High Energy Phys. 2023, No. 8, Paper No. 42, 50 p. (2023; Zbl 07748917) Full Text: DOI arXiv
Nguyen, Mendel; Tanizaki, Yuya; Ünsal, Mithat Study of gapped phases of 4d gauge theories using temporal gauging of the \(\mathbb{Z}_N\) 1-form symmetry. (English) Zbl 07748888 J. High Energy Phys. 2023, No. 8, Paper No. 13, 24 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{M. Nguyen} et al., J. High Energy Phys. 2023, No. 8, Paper No. 13, 24 p. (2023; Zbl 07748888) Full Text: DOI arXiv
Addala, Lanoir Large time asymptotics for Fermi-Dirac statistics coupled to a Poisson equation. (English) Zbl 1520.82034 S\(\vec{\text{e}}\)MA J. 80, No. 3, 381-391 (2023). MSC: 82C40 35H10 35P15 35Q84 35R09 PDF BibTeX XML Cite \textit{L. Addala}, S\(\vec{\text{e}}\)MA J. 80, No. 3, 381--391 (2023; Zbl 1520.82034) Full Text: DOI
Nowaskie, Gabriel The half-transform ansatz: quarkonium dynamics in quantum phase space representation. (English) Zbl 07738872 Int. J. Theor. Phys. 62, No. 8, Paper No. 186, 37 p. (2023). MSC: 81Qxx 33Cxx 81Vxx PDF BibTeX XML Cite \textit{G. Nowaskie}, Int. J. Theor. Phys. 62, No. 8, Paper No. 186, 37 p. (2023; Zbl 07738872) Full Text: DOI arXiv
Vogl, Christopher J.; Joseph, Ilon; Holec, Milan Mesh refinement for anisotropic diffusion in magnetized plasmas. (English) Zbl 07731327 Comput. Math. Appl. 145, 159-174 (2023). MSC: 76-XX 82-XX PDF BibTeX XML Cite \textit{C. J. Vogl} et al., Comput. Math. Appl. 145, 159--174 (2023; Zbl 07731327) Full Text: DOI arXiv
Rekhviashvili, S. Sh. Effect of polarization on exciton properties in a semiconductor quantum dot. (English. Russian original) Zbl 07730111 Russ. Phys. J. 65, No. 12, 2058-2067 (2023); translation from Izv. Vyssh. Uchebn. Zaved., Fiz 65, No. 12, 15-23 (2022). MSC: 81-XX PDF BibTeX XML Cite \textit{S. Sh. Rekhviashvili}, Russ. Phys. J. 65, No. 12, 2058--2067 (2023; Zbl 07730111); translation from Izv. Vyssh. Uchebn. Zaved., Fiz 65, No. 12, 15--23 (2022) Full Text: DOI
Kohno, H.; Myra, J. R. A finite element procedure for time-dependent radio-frequency sheaths based on a two-dimensional microscale fluid model. (English) Zbl 07723512 Comput. Phys. Commun. 291, Article ID 108841, 15 p. (2023). MSC: 76-XX 78-XX PDF BibTeX XML Cite \textit{H. Kohno} and \textit{J. R. Myra}, Comput. Phys. Commun. 291, Article ID 108841, 15 p. (2023; Zbl 07723512) Full Text: DOI
Chen, Shi; Fukushima, Kenji; Qiu, Zebin Magnetic enhancement of baryon confinement modeled via a deformed skyrmion. (English) Zbl 07715279 Phys. Lett., B 843, Article ID 137992, 6 p. (2023). MSC: 81-XX 83-XX PDF BibTeX XML Cite \textit{S. Chen} et al., Phys. Lett., B 843, Article ID 137992, 6 p. (2023; Zbl 07715279) Full Text: DOI arXiv
Nath, Debraj; Roy, Amlan K. Average energy and Shannon entropy of a confined harmonic oscillator in a time-dependent moving boundary. (English) Zbl 1518.94029 J. Math. Chem. 61, No. 7, 1491-1503 (2023). MSC: 94A17 05C50 35J10 PDF BibTeX XML Cite \textit{D. Nath} and \textit{A. K. Roy}, J. Math. Chem. 61, No. 7, 1491--1503 (2023; Zbl 1518.94029) Full Text: DOI
Araujo de Resende, M. F.; Ibieta Jimenez, J. P.; Lorca Espiro, J. Quantum double models coupled to matter fields: a detailed review for a dualization procedure. (English) Zbl 07710972 Int. J. Quantum Inf. 21, No. 4, Article ID 2350018, 63 p. (2023). MSC: 81Q35 70S15 18N10 81Q65 PDF BibTeX XML Cite \textit{M. F. Araujo de Resende} et al., Int. J. Quantum Inf. 21, No. 4, Article ID 2350018, 63 p. (2023; Zbl 07710972) Full Text: DOI arXiv
Sun, Yong; An, Ran; Zhang, Wei; Han, Shuang; Ma, Xin-Jun; Li, Pei-fang; Xiao, Jing-Lin The optical phonon drag effect on strong-coupling decay magnetopolaron in Gaussian alkali halogen ionic quantum wells. (English) Zbl 1516.81109 Commun. Theor. Phys. 75, No. 5, Article ID 055701, 6 p. (2023). MSC: 81Q80 PDF BibTeX XML Cite \textit{Y. Sun} et al., Commun. Theor. Phys. 75, No. 5, Article ID 055701, 6 p. (2023; Zbl 1516.81109) Full Text: DOI
Athenodorou, Andreas; Dubovsky, Sergei; Luo, Conghuan; Teper, Michael Excitations of Ising strings on a lattice. (English) Zbl 07701897 J. High Energy Phys. 2023, No. 5, Paper No. 82, 44 p. (2023). MSC: 81-XX 83-XX PDF BibTeX XML Cite \textit{A. Athenodorou} et al., J. High Energy Phys. 2023, No. 5, Paper No. 82, 44 p. (2023; Zbl 07701897) Full Text: DOI arXiv
Yu, Yongchuan; Zhu, Yujie; Zhang, Chi; Haidn, Oskar J.; Hu, Xiangyu Level-set based pre-processing techniques for particle methods. (English) Zbl 1517.76054 Comput. Phys. Commun. 289, Article ID 108744, 15 p. (2023). MSC: 76M28 76G25 76Z05 74F10 PDF BibTeX XML Cite \textit{Y. Yu} et al., Comput. Phys. Commun. 289, Article ID 108744, 15 p. (2023; Zbl 1517.76054) Full Text: DOI
Dempsey, Ross; Klebanov, Igor R.; Lin, Loki L.; Pufu, Silviu S. Adjoint Majorana \(\mathrm{QCD}_2\) at finite \(N\). (English) Zbl 07693995 J. High Energy Phys. 2023, No. 4, Paper No. 107, 37 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{R. Dempsey} et al., J. High Energy Phys. 2023, No. 4, Paper No. 107, 37 p. (2023; Zbl 07693995) Full Text: DOI arXiv
Armas, Jay; Batzios, Giorgos; van der Schaar, Jan Pieter Holographic duals of the \(\mathcal{N} = 1^\ast\) gauge theory. (English) Zbl 07693909 J. High Energy Phys. 2023, No. 4, Paper No. 21, 37 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{J. Armas} et al., J. High Energy Phys. 2023, No. 4, Paper No. 21, 37 p. (2023; Zbl 07693909) Full Text: DOI arXiv
Mazharimousavi, S. Habib Quark-antiquark confinement and nonlinear electrodynamics. (English) Zbl 07692583 Phys. Lett., B 841, Article ID 137948, 6 p. (2023). MSC: 81V05 78A60 83C57 35Q61 80A10 70M20 85A15 PDF BibTeX XML Cite \textit{S. H. Mazharimousavi}, Phys. Lett., B 841, Article ID 137948, 6 p. (2023; Zbl 07692583) Full Text: DOI arXiv
Chernoshtanov, I.; Efimova, A.; Soloviev, A.; Vshivkov, V. Fast ion-ion collisions simulation in particle-in-cell method. (English) Zbl 07688789 Lobachevskii J. Math. 44, No. 1, 26-32 (2023). MSC: 82-XX 76-XX PDF BibTeX XML Cite \textit{I. Chernoshtanov} et al., Lobachevskii J. Math. 44, No. 1, 26--32 (2023; Zbl 07688789) Full Text: DOI
Delmastro, Diego; Gomis, Jaume; Yu, Matthew Infrared phases of \(2d\) QCD. (English) Zbl 07685580 J. High Energy Phys. 2023, No. 2, Paper No. 157, 75 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{D. Delmastro} et al., J. High Energy Phys. 2023, No. 2, Paper No. 157, 75 p. (2023; Zbl 07685580) Full Text: DOI arXiv
Poppitz, Erich; Wandler, F. David Gauge theory geography: charting a path between semiclassical islands. (English) Zbl 07685437 J. High Energy Phys. 2023, No. 2, Paper No. 14, 55 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{E. Poppitz} and \textit{F. D. Wandler}, J. High Energy Phys. 2023, No. 2, Paper No. 14, 55 p. (2023; Zbl 07685437) Full Text: DOI arXiv
Whittington, S. G. Self-avoiding walks and polygons confined to a square. (English) Zbl 1515.82074 J. Phys. A, Math. Theor. 56, No. 18, Article ID 185001, 8 p. (2023). MSC: 82B41 PDF BibTeX XML Cite \textit{S. G. Whittington}, J. Phys. A, Math. Theor. 56, No. 18, Article ID 185001, 8 p. (2023; Zbl 1515.82074) Full Text: DOI arXiv
Mishra, Rashmish K. Confinement in de Sitter space and the swampland. (English) Zbl 07675190 J. High Energy Phys. 2023, No. 1, Paper No. 2, 22 p. (2023). MSC: 81-XX PDF BibTeX XML Cite \textit{R. K. Mishra}, J. High Energy Phys. 2023, No. 1, Paper No. 2, 22 p. (2023; Zbl 07675190) Full Text: DOI arXiv
Beschastnyi, Ivan; Boscain, Ugo; Pozzoli, Eugenio Quantum confinement for the curvature Laplacian \(- \Delta + cK\) on 2D-almost-Riemannian manifolds. (English) Zbl 1510.58008 Potential Anal. 58, No. 3, 441-464 (2023). MSC: 58J05 58J90 35J10 PDF BibTeX XML Cite \textit{I. Beschastnyi} et al., Potential Anal. 58, No. 3, 441--464 (2023; Zbl 1510.58008) Full Text: DOI arXiv
Castañeda, Román; Bedoya-Ríos, Pablo; Hurtado, Camilo Quantum formalism of interference as confinement in spatially structured Lorentzian wells. (English) Zbl 1519.83094 J. Phys. A, Math. Theor. 56, No. 4, Article ID 045302, 23 p. (2023). MSC: 83F05 81R30 57R67 81P40 81S07 81V80 81P16 53B30 PDF BibTeX XML Cite \textit{R. Castañeda} et al., J. Phys. A, Math. Theor. 56, No. 4, Article ID 045302, 23 p. (2023; Zbl 1519.83094) Full Text: DOI
Ahmady, Mohammad; Kaur, Satvir; Mondal, Chandan; Sandapen, Ruben Pion spectroscopy and dynamics using the holographic light-front Schrödinger equation and the ’t Hooft equation. (English) Zbl 1518.83067 Phys. Lett., B 836, Article ID 137628, 7 p. (2023). MSC: 83E05 81Q05 81V05 81V35 81V15 81R40 81U90 81V80 81V25 PDF BibTeX XML Cite \textit{M. Ahmady} et al., Phys. Lett., B 836, Article ID 137628, 7 p. (2023; Zbl 1518.83067) Full Text: DOI arXiv
Costes, M.; Petropoulos, Ilias; Gand, Fabien; Heib, Sebastien Analysis of a higher-order vorticity confinement scheme in flux correction form. (English) Zbl 1521.76410 Comput. Fluids 250, Article ID 105712, 22 p. (2023). MSC: 76M12 76-10 PDF BibTeX XML Cite \textit{M. Costes} et al., Comput. Fluids 250, Article ID 105712, 22 p. (2023; Zbl 1521.76410) Full Text: DOI
Chrisment, A.; Debayle, A.; Feugeas, J.-L.; Loiseau, P.; Masson-Laborde, P.-E.; Mathiaud, J.; Nicolaï, Ph.; Tikhonchuk, V. A deterministic numerical scheme for an electron heat transport model. (English) Zbl 07627988 Math. Comput. Simul. 205, 78-97 (2023). MSC: 82-XX 76-XX PDF BibTeX XML Cite \textit{A. Chrisment} et al., Math. Comput. Simul. 205, 78--97 (2023; Zbl 07627988) Full Text: DOI
Baran, A. V.; Kudryashov, V. V. Influence of a magnetic field on electron energy levels in semiconductor quantum dots in the presence of spin-orbit interactions. (English) Zbl 07749806 Nonlinear Phenom. Complex Syst., Minsk 25, No. 4, 336-340 (2022). MSC: 82-XX 81-XX PDF BibTeX XML Cite \textit{A. V. Baran} and \textit{V. V. Kudryashov}, Nonlinear Phenom. Complex Syst., Minsk 25, No. 4, 336--340 (2022; Zbl 07749806) Full Text: DOI
Kozhevnikova, Marina; Oganesian, Armen; Teryaev, Oleg; Solovtsova, Olga Nonperturbative corrections to Adler function and hypothesis of vacuum dominance. (English) Zbl 07749801 Nonlinear Phenom. Complex Syst., Minsk 25, No. 3, 297-305 (2022). MSC: 81-XX 82-XX PDF BibTeX XML Cite \textit{M. Kozhevnikova} et al., Nonlinear Phenom. Complex Syst., Minsk 25, No. 3, 297--305 (2022; Zbl 07749801) Full Text: DOI
Pietrenko-Dabrowska, Anna; Koziel, Slawomir Expedited yield-driven design of high-frequency structures by kriging surrogates in confined domains. (English) Zbl 07733188 Koziel, Slawomir (ed.) et al., Surrogate modeling for high-frequency design. Recent advances. Singapore: World Scientific. 293-324 (2022). MSC: 78A40 78A50 78A55 78M32 62F15 PDF BibTeX XML Cite \textit{A. Pietrenko-Dabrowska} and \textit{S. Koziel}, in: Surrogate modeling for high-frequency design. Recent advances. Singapore: World Scientific. 293--324 (2022; Zbl 07733188) Full Text: DOI
Koziel, Slawomir; Pietrenko-Dabrowska, Anna Performance-driven inverse/forward modeling of antennas in variable-thickness domains. (English) Zbl 07733185 Koziel, Slawomir (ed.) et al., Surrogate modeling for high-frequency design. Recent advances. Singapore: World Scientific. 213-243 (2022). MSC: 78A40 78A50 78A55 78M32 62F15 PDF BibTeX XML Cite \textit{S. Koziel} and \textit{A. Pietrenko-Dabrowska}, in: Surrogate modeling for high-frequency design. Recent advances. Singapore: World Scientific. 213--243 (2022; Zbl 07733185) Full Text: DOI
Fu, Jinbin; Yuan, Yi; Vigevano, Luigi Numerical investigations of the vortex feature-based vorticity confinement models for the assessment in three-dimensional vortex-dominated flows. (English) Zbl 07699926 Meccanica 57, No. 7, 1657-1676 (2022). MSC: 76-XX PDF BibTeX XML Cite \textit{J. Fu} et al., Meccanica 57, No. 7, 1657--1676 (2022; Zbl 07699926) Full Text: DOI
Jia, Chen; Liu, Ziqi; Zhang, Zhimin Some mathematical aspects of Anderson localization: boundary effect, multimodality, and bifurcation. (English) Zbl 1516.82044 Commun. Theor. Phys. 74, No. 11, Article ID 115005, 20 p. (2022). MSC: 82B44 82B10 PDF BibTeX XML Cite \textit{C. Jia} et al., Commun. Theor. Phys. 74, No. 11, Article ID 115005, 20 p. (2022; Zbl 1516.82044) Full Text: DOI arXiv
Xiao, Wei; Sun, Qizheng; Liu, Xiaojing; He, Hui; He, Donghao; Pan, Qingquan; Zhang, Tengfei Application of stiffness confinement method within variational nodal method for solving time-dependent neutron transport equation. (English) Zbl 07679974 Comput. Phys. Commun. 279, Article ID 108450, 11 p. (2022). MSC: 82D75 PDF BibTeX XML Cite \textit{W. Xiao} et al., Comput. Phys. Commun. 279, Article ID 108450, 11 p. (2022; Zbl 07679974) Full Text: DOI
Golán, Jorge Dasilva; Pérez, Margarita García \(\mathrm{SU}(N)\) fractional instantons and the Fibonacci sequence. (English) Zbl 07671387 J. High Energy Phys. 2022, No. 12, Paper No. 109, 30 p. (2022). MSC: 81-XX PDF BibTeX XML Cite \textit{J. D. Golán} and \textit{M. G. Pérez}, J. High Energy Phys. 2022, No. 12, Paper No. 109, 30 p. (2022; Zbl 07671387) Full Text: DOI arXiv
Lillard, Benjamin Confinement on the moose lattice. (English) Zbl 07657448 J. High Energy Phys. 2022, No. 11, Paper No. 125, 45 p. (2022). MSC: 81-XX PDF BibTeX XML Cite \textit{B. Lillard}, J. High Energy Phys. 2022, No. 11, Paper No. 125, 45 p. (2022; Zbl 07657448) Full Text: DOI arXiv
Bajeot, Stephane; Benvenuti, Sergio S-confinements from deconfinements. (English) Zbl 07657394 J. High Energy Phys. 2022, No. 11, Paper No. 71, 53 p. (2022). MSC: 81-XX PDF BibTeX XML Cite \textit{S. Bajeot} and \textit{S. Benvenuti}, J. High Energy Phys. 2022, No. 11, Paper No. 71, 53 p. (2022; Zbl 07657394) Full Text: DOI arXiv
Oka, Takashi Confinement phase in carbon-nanotubes and the extended massive Schwinger model. (English) Zbl 1520.81147 J. Phys. A, Math. Theor. 55, No. 50, Article ID 504001, 8 p. (2022). MSC: 81T40 82D80 PDF BibTeX XML Cite \textit{T. Oka}, J. Phys. A, Math. Theor. 55, No. 50, Article ID 504001, 8 p. (2022; Zbl 1520.81147) Full Text: DOI arXiv
Sonnino, Giorgio; Peeters, Philippe; Nardone, Pasquale; Tirapegui, Enrique Turbulent transport in Tokamak-plasmas: a thermodynamic approach. (English) Zbl 1507.82071 Chaos Solitons Fractals 165, Part 1, Article ID 112796, 13 p. (2022). MSC: 82D10 35Q84 35Q60 53Z05 PDF BibTeX XML Cite \textit{G. Sonnino} et al., Chaos Solitons Fractals 165, Part 1, Article ID 112796, 13 p. (2022; Zbl 1507.82071) Full Text: DOI arXiv
Pazarbaşı, Cihan; Ünsal, Mithat Polyakov model in ’t Hooft flux background: a quantum mechanical reduction with memory. (English) Zbl 1522.81236 J. High Energy Phys. 2022, No. 8, Paper No. 116, 47 p. (2022). MSC: 81T13 81Q20 81T16 81T60 PDF BibTeX XML Cite \textit{C. Pazarbaşı} and \textit{M. Ünsal}, J. High Energy Phys. 2022, No. 8, Paper No. 116, 47 p. (2022; Zbl 1522.81236) Full Text: DOI arXiv
Donahue, John C.; Dubovsky, Sergei Quantization of the zigzag model. (English) Zbl 1522.81671 J. High Energy Phys. 2022, No. 8, Paper No. 47, 29 p. (2022). MSC: 81T70 81T40 81V70 81R12 81T20 PDF BibTeX XML Cite \textit{J. C. Donahue} and \textit{S. Dubovsky}, J. High Energy Phys. 2022, No. 8, Paper No. 47, 29 p. (2022; Zbl 1522.81671) Full Text: DOI arXiv
Tanizaki, Yuya; Ünsal, Mithat Semiclassics with ’t Hooft flux background for QCD with 2-index quarks. (English) Zbl 1522.81735 J. High Energy Phys. 2022, No. 8, Paper No. 38, 23 p. (2022). MSC: 81V05 81T50 81T16 81R40 81T13 81T30 PDF BibTeX XML Cite \textit{Y. Tanizaki} and \textit{M. Ünsal}, J. High Energy Phys. 2022, No. 8, Paper No. 38, 23 p. (2022; Zbl 1522.81735) Full Text: DOI arXiv
Hayashi, Yui; Tanizaki, Yuya Non-invertible self-duality defects of Cardy-Rabinovici model and mixed gravitational anomaly. (English) Zbl 1522.81231 J. High Energy Phys. 2022, No. 8, Paper No. 36, 53 p. (2022). MSC: 81T13 81T45 81T50 83E30 81T25 PDF BibTeX XML Cite \textit{Y. Hayashi} and \textit{Y. Tanizaki}, J. High Energy Phys. 2022, No. 8, Paper No. 36, 53 p. (2022; Zbl 1522.81231) Full Text: DOI arXiv
Luzio, Andrea; Xu, Ling-Xiao On the derivation of chiral symmetry breaking in QCD-like theories and S-confining theories. (English) Zbl 1522.81646 J. High Energy Phys. 2022, No. 8, Paper No. 16, 33 p. (2022). MSC: 81T60 81R40 81T13 81V05 PDF BibTeX XML Cite \textit{A. Luzio} and \textit{L.-X. Xu}, J. High Energy Phys. 2022, No. 8, Paper No. 16, 33 p. (2022; Zbl 1522.81646) Full Text: DOI arXiv
Harmark, Troels; Wilhelm, Matthias Solving the Hagedorn temperature of \(\mathrm{AdS}_5/\mathrm{CFT}_4\) via the quantum spectral curve: chemical potentials and deformations. (English) Zbl 1522.81628 J. High Energy Phys. 2022, No. 7, Paper No. 136, 53 p. (2022). MSC: 81T60 81T28 81T13 81R12 81T40 81T30 PDF BibTeX XML Cite \textit{T. Harmark} and \textit{M. Wilhelm}, J. High Energy Phys. 2022, No. 7, Paper No. 136, 53 p. (2022; Zbl 1522.81628) Full Text: DOI arXiv
Tong, David Comments on symmetric mass generation in 2d and 4d. (English) Zbl 1522.81577 J. High Energy Phys. 2022, No. 7, Paper No. 1, 28 p. (2022). MSC: 81T50 81T13 83E30 81T40 PDF BibTeX XML Cite \textit{D. Tong}, J. High Energy Phys. 2022, No. 7, Paper No. 1, 28 p. (2022; Zbl 1522.81577) Full Text: DOI arXiv
Lagnese, Gianluca; Surace, Federica Maria; Kormos, Márton; Calabrese, Pasquale Quenches and confinement in a Heisenberg-Ising spin ladder. (English) Zbl 1507.82051 J. Phys. A, Math. Theor. 55, No. 12, Article ID 124003, 15 p. (2022). MSC: 82C10 82C20 PDF BibTeX XML Cite \textit{G. Lagnese} et al., J. Phys. A, Math. Theor. 55, No. 12, Article ID 124003, 15 p. (2022; Zbl 1507.82051) Full Text: DOI arXiv
Smith, Philip; Panagiotou, Eleni The second Vassiliev measure of uniform random walks and polygons in confined space. (English) Zbl 1505.82061 J. Phys. A, Math. Theor. 55, No. 9, Article ID 095601, 18 p. (2022). MSC: 82D60 82B41 PDF BibTeX XML Cite \textit{P. Smith} and \textit{E. Panagiotou}, J. Phys. A, Math. Theor. 55, No. 9, Article ID 095601, 18 p. (2022; Zbl 1505.82061) Full Text: DOI
Castillo-Celeita, Miguel; Jakubský, Vít; Zelaya, Kevin Confinement in bilayer graphene via intra- and inter-layer interactions. (English) Zbl 1499.82055 J. Phys. A, Math. Theor. 55, No. 3, Article ID 035202, 23 p. (2022). MSC: 82D80 81Q05 PDF BibTeX XML Cite \textit{M. Castillo-Celeita} et al., J. Phys. A, Math. Theor. 55, No. 3, Article ID 035202, 23 p. (2022; Zbl 1499.82055) Full Text: DOI arXiv
Hanada, Masanori; Holden, Jack; Knaggs, Matthew; O’Bannon, Andy Global symmetries and partial confinement. (English) Zbl 1522.81721 J. High Energy Phys. 2022, No. 3, Paper No. 118, 49 p. (2022). MSC: 81V05 81T25 81T13 81T60 81T28 PDF BibTeX XML Cite \textit{M. Hanada} et al., J. High Energy Phys. 2022, No. 3, Paper No. 118, 49 p. (2022; Zbl 1522.81721) Full Text: DOI arXiv
Mukherjee, Shantonu; Lahiri, Amitabha Spin gauge theory, duality and fermion pairing. (English) Zbl 1522.81392 J. High Energy Phys. 2022, No. 2, Paper No. 68, 18 p. (2022). MSC: 81T30 81T13 81T11 81T16 81T35 81R40 PDF BibTeX XML Cite \textit{S. Mukherjee} and \textit{A. Lahiri}, J. High Energy Phys. 2022, No. 2, Paper No. 68, 18 p. (2022; Zbl 1522.81392) Full Text: DOI arXiv
Anber, Mohamed M.; Hong, Sungwoo; Son, Minho New anomalies, TQFTs, and confinement in bosonic chiral gauge theories. (English) Zbl 1522.81571 J. High Energy Phys. 2022, No. 2, Paper No. 62, 48 p. (2022). MSC: 81T50 81T13 83E30 81V05 81T60 PDF BibTeX XML Cite \textit{M. M. Anber} et al., J. High Energy Phys. 2022, No. 2, Paper No. 62, 48 p. (2022; Zbl 1522.81571) Full Text: DOI arXiv
Smith, Philip Boyle; Karasik, Avner; Lohitsiri, Nakarin; Tong, David On discrete anomalies in chiral gauge theories. (English) Zbl 1521.81363 J. High Energy Phys. 2022, No. 1, Paper No. 112, 16 p. (2022). MSC: 81T50 81T13 81T30 81T45 81V05 PDF BibTeX XML Cite \textit{P. B. Smith} et al., J. High Energy Phys. 2022, No. 1, Paper No. 112, 16 p. (2022; Zbl 1521.81363) Full Text: DOI arXiv
Casini, Horacio; Magán, Javier M.; Martínez, Pedro J. Entropic order parameters in weakly coupled gauge theories. (English) Zbl 1521.81436 J. High Energy Phys. 2022, No. 1, Paper No. 79, 58 p. (2022). MSC: 81V05 81R40 81T40 81T13 PDF BibTeX XML Cite \textit{H. Casini} et al., J. High Energy Phys. 2022, No. 1, Paper No. 79, 58 p. (2022; Zbl 1521.81436) Full Text: DOI arXiv
Reichert, Manuel; Sannino, Francesco; Wang, Zhi-Wei; Zhang, Chen Dark confinement and chiral phase transitions: gravitational waves vs matter representations. (English) Zbl 1521.83027 J. High Energy Phys. 2022, No. 1, Paper No. 3, 54 p. (2022). MSC: 83C35 81T28 81R40 PDF BibTeX XML Cite \textit{M. Reichert} et al., J. High Energy Phys. 2022, No. 1, Paper No. 3, 54 p. (2022; Zbl 1521.83027) Full Text: DOI arXiv
Wang, Chenglin; Zhang, Jian Cross-constrained variational method and nonlinear Schrödinger equation with partial confinement. (English) Zbl 1495.35160 Math. Control Relat. Fields 12, No. 3, 611-619 (2022). MSC: 35Q55 35A15 35B30 PDF BibTeX XML Cite \textit{C. Wang} and \textit{J. Zhang}, Math. Control Relat. Fields 12, No. 3, 611--619 (2022; Zbl 1495.35160) Full Text: DOI
Gallone, Matteo; Michelangeli, Alessandro; Pozzoli, Eugenio Quantum geometric confinement and dynamical transmission in Grushin cylinder. (English) Zbl 1495.81056 Rev. Math. Phys. 34, No. 7, Article ID 2250018, 91 p. (2022). MSC: 81Q35 34A05 47B02 47B35 47Exx 47N20 53B21 81Q10 PDF BibTeX XML Cite \textit{M. Gallone} et al., Rev. Math. Phys. 34, No. 7, Article ID 2250018, 91 p. (2022; Zbl 1495.81056) Full Text: DOI arXiv
Jang, Jin Woo; Strain, Robert M.; Wong, Tak Kwong Magnetic confinement for the 2D axisymmetric relativistic Vlasov-Maxwell system in an annulus. (English) Zbl 1491.35411 Kinet. Relat. Models 15, No. 4, 569-604 (2022). MSC: 35Q83 35Q61 82C40 82D10 PDF BibTeX XML Cite \textit{J. W. Jang} et al., Kinet. Relat. Models 15, No. 4, 569--604 (2022; Zbl 1491.35411) Full Text: DOI arXiv
Benhellal, Badreddine Spectral properties of the Dirac operator coupled with \(\delta\)-shell interactions. (English) Zbl 1490.81073 Lett. Math. Phys. 112, No. 3, Paper No. 52, 52 p. (2022). MSC: 81Q10 81V05 35P15 58C40 PDF BibTeX XML Cite \textit{B. Benhellal}, Lett. Math. Phys. 112, No. 3, Paper No. 52, 52 p. (2022; Zbl 1490.81073) Full Text: DOI arXiv
Privat, Yannick; Robin, Rémi; Sigalotti, Mario Optimal shape of stellarators for magnetic confinement fusion. (English. French summary) Zbl 1491.49031 J. Math. Pures Appl. (9) 163, 231-264 (2022). MSC: 49Q10 49Q12 78A25 65T40 PDF BibTeX XML Cite \textit{Y. Privat} et al., J. Math. Pures Appl. (9) 163, 231--264 (2022; Zbl 1491.49031) Full Text: DOI arXiv
Constantin, Peter; Drivas, Theodore D.; Ginsberg, Daniel Flexibility and rigidity of free boundary MHD equilibria. (English) Zbl 1490.76231 Nonlinearity 35, No. 5, 2363-2384 (2022). MSC: 76W05 35Q31 35Q35 PDF BibTeX XML Cite \textit{P. Constantin} et al., Nonlinearity 35, No. 5, 2363--2384 (2022; Zbl 1490.76231) Full Text: DOI arXiv
Ercolani, Nicholas; Lega, Joceline; Tippings, Brandon Dynamics of nonpolar solutions to the discrete Painlevé I equation. (English) Zbl 1506.39013 SIAM J. Appl. Dyn. Syst. 21, No. 2, 1322-1351 (2022). Reviewer: Yousuke Ohyama (Tokushima) MSC: 39A36 39A12 37J65 41A60 37J70 PDF BibTeX XML Cite \textit{N. Ercolani} et al., SIAM J. Appl. Dyn. Syst. 21, No. 2, 1322--1351 (2022; Zbl 1506.39013) Full Text: DOI arXiv
Nasirimoghadam, Soudabe; Moradi, Mahmood; Aliabadi, Roohollah Biaxial planar nematic layered structures of highly confined prolate hard ellipsoids. (English) Zbl 07529610 Physica A 598, Article ID 127371, 12 p. (2022). MSC: 82-XX PDF BibTeX XML Cite \textit{S. Nasirimoghadam} et al., Physica A 598, Article ID 127371, 12 p. (2022; Zbl 07529610) Full Text: DOI
Giuliani, Andrew; Wechsung, Florian; Cerfon, Antoine; Stadler, Georg; Landreman, Matt Single-stage gradient-based stellarator coil design: optimization for near-axis quasi-symmetry. (English) Zbl 07525138 J. Comput. Phys. 459, Article ID 111147, 21 p. (2022). MSC: 90Cxx 65Kxx 76Xxx PDF BibTeX XML Cite \textit{A. Giuliani} et al., J. Comput. Phys. 459, Article ID 111147, 21 p. (2022; Zbl 07525138) Full Text: DOI arXiv
Xin, Wei Influence of electromagnetic field on decoherence in impurity center semiconductor quantum dot by confined spherical Gaussian potential. (English) Zbl 1487.81101 Int. J. Theor. Phys. 61, No. 3, Paper No. 73, 17 p. (2022). MSC: 81Q37 81V65 78A30 81P40 81Q05 60J35 81S22 PDF BibTeX XML Cite \textit{W. Xin}, Int. J. Theor. Phys. 61, No. 3, Paper No. 73, 17 p. (2022; Zbl 1487.81101) Full Text: DOI
Knopf, Patrik; Weber, Jörg On the two and one-half dimensional Vlasov-Poisson system with an external magnetic field: global well-posedness and stability of confined steady states. (English) Zbl 1481.82021 Nonlinear Anal., Real World Appl. 65, Article ID 103460, 24 p. (2022). MSC: 82D10 35Q83 76X05 35Q35 35Q60 PDF BibTeX XML Cite \textit{P. Knopf} and \textit{J. Weber}, Nonlinear Anal., Real World Appl. 65, Article ID 103460, 24 p. (2022; Zbl 1481.82021) Full Text: DOI arXiv
Zheng, Zhongyu; Xu, Xinliang; Wang, Yuren; Han, Yilong Hydrodynamic couplings of colloidal ellipsoids diffusing in channels. (English) Zbl 1514.76105 J. Fluid Mech. 933, Paper No. A40, 29 p. (2022). MSC: 76T20 76R50 76D07 PDF BibTeX XML Cite \textit{Z. Zheng} et al., J. Fluid Mech. 933, Paper No. A40, 29 p. (2022; Zbl 1514.76105) Full Text: DOI
Yalim, Jason; Welfert, Bruno D.; Lopez, Juan M. Oblique instability of a stratified oscillatory boundary layer. (English) Zbl 1514.76027 J. Fluid Mech. 933, Paper No. R3, 11 p. (2022). MSC: 76E05 76D10 76D50 76D33 76M99 PDF BibTeX XML Cite \textit{J. Yalim} et al., J. Fluid Mech. 933, Paper No. R3, 11 p. (2022; Zbl 1514.76027) Full Text: DOI
Liu, Jiayin; He, Zhiqian; Feng, Binhua Existence and stability of standing waves for the inhomogeneous Gross-Pitaevskii equation with a partial confinement. (English) Zbl 1489.35255 J. Math. Anal. Appl. 506, No. 1, Article ID 125604, 20 p. (2022). MSC: 35Q55 35B35 35B44 35A15 35J61 35A01 PDF BibTeX XML Cite \textit{J. Liu} et al., J. Math. Anal. Appl. 506, No. 1, Article ID 125604, 20 p. (2022; Zbl 1489.35255) Full Text: DOI
Shifman, Mikhail A. Advanced topics in quantum field theory. A lecture course. 2nd revised edition. (English) Zbl 07403288 Cambridge: Cambridge University Press (ISBN 978-1-108-84042-2/hbk; 978-1-108-88591-1/ebook). xx, 718 p. (2022). MSC: 81-02 81T30 81T60 81T50 81T13 PDF BibTeX XML Cite \textit{M. A. Shifman}, Advanced topics in quantum field theory. A lecture course. 2nd revised edition. Cambridge: Cambridge University Press (2022; Zbl 07403288) Full Text: DOI
Huang, Ying-Di; Xie, Jia-Ting; Hu, Su-Mei; He, Yan Edge effect and interface confinement modulated strain distribution and interface adhesion energy in graphene/Si system. (English) Zbl 1521.82020 Commun. Theor. Phys. 73, No. 1, Article ID 015702, 6 p. (2021). MSC: 82D37 74K35 74G60 74S05 PDF BibTeX XML Cite \textit{Y.-D. Huang} et al., Commun. Theor. Phys. 73, No. 1, Article ID 015702, 6 p. (2021; Zbl 1521.82020) Full Text: DOI
Li, Haiyan; Liang, Guiming; Huang, Yunbao An efficient radiation analysis approach through compressive model for laser driven inertial confinement fusion. (English) Zbl 07689582 Comput. Phys. Commun. 259, Article ID 107644, 12 p. (2021). MSC: 82-XX 78-XX PDF BibTeX XML Cite \textit{H. Li} et al., Comput. Phys. Commun. 259, Article ID 107644, 12 p. (2021; Zbl 07689582) Full Text: DOI
Zhou, Tingtao; Peng, Zhiwei; Gulian, Mamikon; Brady, John F. Distribution and pressure of active Lévy swimmers under confinement. (English) Zbl 1519.60123 J. Phys. A, Math. Theor. 54, No. 27, Article ID 275002, 21 p. (2021). MSC: 60K50 76A30 PDF BibTeX XML Cite \textit{T. Zhou} et al., J. Phys. A, Math. Theor. 54, No. 27, Article ID 275002, 21 p. (2021; Zbl 1519.60123) Full Text: DOI arXiv
Gallone, Matteo; Michelangeli, Alessandro Quantum particle across Grushin singularity. (English) Zbl 1519.53025 J. Phys. A, Math. Theor. 54, No. 21, Article ID 215201, 42 p. (2021). MSC: 53C17 81Q10 35J05 47B25 PDF BibTeX XML Cite \textit{M. Gallone} and \textit{A. Michelangeli}, J. Phys. A, Math. Theor. 54, No. 21, Article ID 215201, 42 p. (2021; Zbl 1519.53025) Full Text: DOI arXiv
Stanislavsky, Aleksander; Weron, Aleksander Confined random motion with Laplace and Linnik statistics. (English) Zbl 1519.60122 J. Phys. A, Math. Theor. 54, No. 5, Article ID 055009, 17 p. (2021). MSC: 60K50 44A10 60E07 60E10 PDF BibTeX XML Cite \textit{A. Stanislavsky} and \textit{A. Weron}, J. Phys. A, Math. Theor. 54, No. 5, Article ID 055009, 17 p. (2021; Zbl 1519.60122) Full Text: DOI
Tirozzi, B.; Buratti, P.; Alladio, F.; Micozzi, P. Theory of the PROTO-SPHERA experiment. (English) Zbl 1504.82048 Manuilov, Vladimir M. (ed.) et al., Differential equations on manifolds and mathematical physics. Dedicated to the memory of Boris Sternin. Selected papers based on the presentations of the conference on partial differential equations and applications, Moscow, Russia, November 6–9, 2018. Cham: Birkhäuser. Trends Math., 327-338 (2021). MSC: 82D10 76X05 82D75 PDF BibTeX XML Cite \textit{B. Tirozzi} et al., in: Differential equations on manifolds and mathematical physics. Dedicated to the memory of Boris Sternin. Selected papers based on the presentations of the conference on partial differential equations and applications, Moscow, Russia, November 6--9, 2018. Cham: Birkhäuser. 327--338 (2021; Zbl 1504.82048) Full Text: DOI
Ünsal, Mithat Strongly coupled QFT dynamics via TQFT coupling. (English) Zbl 1521.81176 J. High Energy Phys. 2021, No. 11, Paper No. 134, 88 p. (2021). MSC: 81T13 81T60 83E30 81V05 81T50 PDF BibTeX XML Cite \textit{M. Ünsal}, J. High Energy Phys. 2021, No. 11, Paper No. 134, 88 p. (2021; Zbl 1521.81176) Full Text: DOI arXiv
Shimizu, Seishi; Matubayasi, Nobuyuki Phase stability condition and liquid-liquid phase separation under mesoscale confinement. (English) Zbl 07573969 Physica A 563, Article ID 125385, 13 p. (2021). MSC: 82-XX PDF BibTeX XML Cite \textit{S. Shimizu} and \textit{N. Matubayasi}, Physica A 563, Article ID 125385, 13 p. (2021; Zbl 07573969) Full Text: DOI
Kreinovich, Vladik.; Kosheleva, Olga Zadeh’s vision, modern physics, and the future of computing. (English) Zbl 1504.70002 TWMS J. Pure Appl. Math. 12, No. 1, 41-53 (2021). MSC: 70A05 81P05 68Q12 PDF BibTeX XML Cite \textit{Vladik. Kreinovich} and \textit{O. Kosheleva}, TWMS J. Pure Appl. Math. 12, No. 1, 41--53 (2021; Zbl 1504.70002) Full Text: Link
Colaïtis, A.; Igumenshchev, I.; Mathiaud, J.; Goncharov, V. Inverse ray tracing on icosahedral tetrahedron grids for non-linear laser plasma interaction coupled to 3D radiation hydrodynamics. (English) Zbl 07515436 J. Comput. Phys. 443, Article ID 110537, 32 p. (2021). MSC: 65Lxx 65Fxx PDF BibTeX XML Cite \textit{A. Colaïtis} et al., J. Comput. Phys. 443, Article ID 110537, 32 p. (2021; Zbl 07515436) Full Text: DOI HAL
Biswal, Minati; Digal, Sanatan; Mamale, Vinod; Shaikh, Sabiar Confinement-deconfinement transition and \(Z_2\) symmetry in \(Z_2\) + Higgs theory. (English) Zbl 1489.81033 Mod. Phys. Lett. A 36, No. 30, Article ID 2150218, 18 p. (2021). MSC: 81Q35 81V22 82B26 65C05 82M31 20M20 PDF BibTeX XML Cite \textit{M. Biswal} et al., Mod. Phys. Lett. A 36, No. 30, Article ID 2150218, 18 p. (2021; Zbl 1489.81033) Full Text: DOI arXiv
Burby, J. W.; Duignan, N.; Meiss, J. D. Integrability, normal forms, and magnetic axis coordinates. (English) Zbl 1487.78002 J. Math. Phys. 62, No. 12, Article ID 122901, 25 p. (2021). MSC: 78A25 37K10 82D10 76W05 76X05 PDF BibTeX XML Cite \textit{J. W. Burby} et al., J. Math. Phys. 62, No. 12, Article ID 122901, 25 p. (2021; Zbl 1487.78002) Full Text: DOI arXiv
Belyaeva, Yulia O.; Gebhard, Björn; Skubachevskii, Alexander L. A general way to confined stationary Vlasov-Poisson plasma configurations. (English) Zbl 1476.35273 Kinet. Relat. Models 14, No. 2, 257-282 (2021). MSC: 35Q83 82D10 PDF BibTeX XML Cite \textit{Y. O. Belyaeva} et al., Kinet. Relat. Models 14, No. 2, 257--282 (2021; Zbl 1476.35273) Full Text: DOI arXiv
Ramos-Sánchez, Saúl; Ratz, Michael; Shirman, Yuri; Shukla, Shreya; Waterbury, Michael Generation flow in field theory and strings. (English) Zbl 1476.83163 J. High Energy Phys. 2021, No. 10, Paper No. 144, 17 p. (2021). MSC: 83E30 81T33 PDF BibTeX XML Cite \textit{S. Ramos-Sánchez} et al., J. High Energy Phys. 2021, No. 10, Paper No. 144, 17 p. (2021; Zbl 1476.83163) Full Text: DOI arXiv
Agrawal, Prateek; Nee, Michael Avoided deconfinement in Randall-Sundrum models. (English) Zbl 1476.85009 J. High Energy Phys. 2021, No. 10, Paper No. 105, 33 p. (2021). MSC: 85A40 83F05 83E30 81T13 81T28 81T30 82B26 PDF BibTeX XML Cite \textit{P. Agrawal} and \textit{M. Nee}, J. High Energy Phys. 2021, No. 10, Paper No. 105, 33 p. (2021; Zbl 1476.85009) Full Text: DOI arXiv
Heidt, Liam; Flaig, M.; Thornber, B. The effect of initial amplitude and convergence ratio on instability development and deposited fluctuating kinetic energy in the single-mode Richtmyer-Meshkov instability in spherical implosions. (English) Zbl 1521.76141 Comput. Fluids 218, Article ID 104842, 23 p. (2021). MSC: 76E30 76M12 76M20 PDF BibTeX XML Cite \textit{L. Heidt} et al., Comput. Fluids 218, Article ID 104842, 23 p. (2021; Zbl 1521.76141) Full Text: DOI
Shu, Ruiwen; Tadmor, Eitan Newtonian repulsion and radial confinement: convergence toward steady state. (English) Zbl 1473.35544 Math. Models Methods Appl. Sci. 31, No. 7, 1297-1321 (2021). MSC: 35Q70 35Q92 92D25 35A15 PDF BibTeX XML Cite \textit{R. Shu} and \textit{E. Tadmor}, Math. Models Methods Appl. Sci. 31, No. 7, 1297--1321 (2021; Zbl 1473.35544) Full Text: DOI arXiv
Raval, Haresh BRST symmetry as a mechanism for confinement. (English) Zbl 07414494 Phys. Lett., B 820, Article ID 136495, 6 p. (2021). MSC: 81-XX 83-XX PDF BibTeX XML Cite \textit{H. Raval}, Phys. Lett., B 820, Article ID 136495, 6 p. (2021; Zbl 07414494) Full Text: DOI
Richman, Evelyn; Sparber, Christof Strong magnetic field limit in a nonlinear Iwatsuka-type model. (English) Zbl 1479.35819 J. Differ. Equations 302, 334-366 (2021). MSC: 35Q55 35B25 35B40 81Q10 81V70 PDF BibTeX XML Cite \textit{E. Richman} and \textit{C. Sparber}, J. Differ. Equations 302, 334--366 (2021; Zbl 1479.35819) Full Text: DOI arXiv
Young, Y.-N.; Shelley, Michael J.; Stein, David B. The many behaviors of deformable active droplets. (English) Zbl 1472.76114 Math. Biosci. Eng. 18, No. 3, 2849-2881 (2021). MSC: 76T20 76E99 76Z10 PDF BibTeX XML Cite \textit{Y. N. Young} et al., Math. Biosci. Eng. 18, No. 3, 2849--2881 (2021; Zbl 1472.76114) Full Text: DOI
Kreinovich, Vladik Fundamental properties of pair-wise interactions naturally lead to quarks and quark confinement: a theorem motivated by neural universal approximation results. (English) Zbl 1472.62007 Ceberio, Martine (ed.) et al., How uncertainty related ideas can provide theoretical explanation for empirical dependencies. Cham: Springer. Stud. Syst. Decis. Control 306, 75-81 (2021). MSC: 62A01 62M45 62P35 PDF BibTeX XML Cite \textit{V. Kreinovich}, Stud. Syst. Decis. Control 306, 75--81 (2021; Zbl 1472.62007) Full Text: DOI Link
Addala, Lanoir; Dolbeault, Jean; Li, Xingyu; Tayeb, M. Lazhar \(\mathrm{L}^2\)-hypocoercivity and large time asymptotics of the linearized Vlasov-Poisson-Fokker-Planck system. (English) Zbl 1486.82034 J. Stat. Phys. 184, No. 1, Paper No. 4, 34 p. (2021). Reviewer: Oleg A. Sinkevich (Moskva) MSC: 82C40 35H10 35P15 35Q84 35Q83 35Q60 35R09 47G20 82C21 82D10 82D37 PDF BibTeX XML Cite \textit{L. Addala} et al., J. Stat. Phys. 184, No. 1, Paper No. 4, 34 p. (2021; Zbl 1486.82034) Full Text: DOI arXiv