Unified Description for Reentrance and Tc Enhancement in Ferromagnetic Superconductors

Fuente: arXiv
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Main Authors: Wang, Xusheng, He, Lianyi, Ji, Shuaihua
Format: Preprint
Published: 2025
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author Wang, Xusheng
He, Lianyi
Ji, Shuaihua
author_facet Wang, Xusheng
He, Lianyi
Ji, Shuaihua
contents Ferromagnetic superconductors, where ferromagnetism and superconductivity coexist despite their antagonism, exhibit strikingly diverse behaviors. Depending on the interplay between the ferromagnetic exchange field and the superconducting condensate, superconductivity may vary with temperature monotonically, non-monotonically, or even reentrantly, all of which can be tuned by external magnetic fields. Here, we present a unified theoretical framework and construct comprehensive phase diagrams that capture these regimes and predict new phenomena, including doublereentrant superconductivity. We further demonstrate how magnetic fields drive systematic shifts between distinct temperature-dependent behaviors, thereby explaining recent experimental results and predicting new transitions. In addition, we show that the field-induced enhancement of superconductivity, previously observed as a slight increase in Tc, can under certain conditions become dramatic.
format Preprint
id arxiv_https___arxiv_org_abs_2509_06889
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unified Description for Reentrance and Tc Enhancement in Ferromagnetic Superconductors
Wang, Xusheng
He, Lianyi
Ji, Shuaihua
Superconductivity
Ferromagnetic superconductors, where ferromagnetism and superconductivity coexist despite their antagonism, exhibit strikingly diverse behaviors. Depending on the interplay between the ferromagnetic exchange field and the superconducting condensate, superconductivity may vary with temperature monotonically, non-monotonically, or even reentrantly, all of which can be tuned by external magnetic fields. Here, we present a unified theoretical framework and construct comprehensive phase diagrams that capture these regimes and predict new phenomena, including doublereentrant superconductivity. We further demonstrate how magnetic fields drive systematic shifts between distinct temperature-dependent behaviors, thereby explaining recent experimental results and predicting new transitions. In addition, we show that the field-induced enhancement of superconductivity, previously observed as a slight increase in Tc, can under certain conditions become dramatic.
title Unified Description for Reentrance and Tc Enhancement in Ferromagnetic Superconductors
topic Superconductivity
url https://arxiv.org/abs/2509.06889