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Main Authors: Flachi, Antonino, Nitta, Muneto, Takada, Satoshi, Yoshii, Ryosuke
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2410.18771
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author Flachi, Antonino
Nitta, Muneto
Takada, Satoshi
Yoshii, Ryosuke
author_facet Flachi, Antonino
Nitta, Muneto
Takada, Satoshi
Yoshii, Ryosuke
contents This paper explores how magnetic fields affect the Casimir effect within the context of a simple quasi-1D interacting fermionic system. A novel phenomenon emerges, resulting from the interaction between external magnetic fields and boundary conditions, which alters the ground state in complex ways and leads to first-order phase transitions among various ground states, specifically inhomogeneous solutions with differing node counts. We calculate the Casimir force, which exhibits discontinuities (jumps) at the transition points between the different ground states.
format Preprint
id arxiv_https___arxiv_org_abs_2410_18771
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Fermion Casimir effect and magnetic Larkin-Ovchinnikov phases
Flachi, Antonino
Nitta, Muneto
Takada, Satoshi
Yoshii, Ryosuke
High Energy Physics - Theory
Superconductivity
This paper explores how magnetic fields affect the Casimir effect within the context of a simple quasi-1D interacting fermionic system. A novel phenomenon emerges, resulting from the interaction between external magnetic fields and boundary conditions, which alters the ground state in complex ways and leads to first-order phase transitions among various ground states, specifically inhomogeneous solutions with differing node counts. We calculate the Casimir force, which exhibits discontinuities (jumps) at the transition points between the different ground states.
title Fermion Casimir effect and magnetic Larkin-Ovchinnikov phases
topic High Energy Physics - Theory
Superconductivity
url https://arxiv.org/abs/2410.18771