Phase Stability of Superfluid $^{3}\mathrm{He}$ in Anisotropic Aerogel

Fuente: arXiv
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Autori principali: Scott, J. W., Park, D., Yuan, X., Halperin, W. P.
Natura: Preprint
Pubblicazione: 2026
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author Scott, J. W.
Park, D.
Yuan, X.
Halperin, W. P.
author_facet Scott, J. W.
Park, D.
Yuan, X.
Halperin, W. P.
contents The A and B phases of superfluid 3 He have vector degrees of freedom that reflect their characteristic broken symmetries, respectively chiral and spin-orbit rotation axes. Anisotropic disorder in the superfluid, imbibed in uniformly strained silica aerogel, orients these degrees of freedom, thereby affecting phase stability. These degrees of freedom have been found to spontaneously reorient at a field-independent transition temperature Tx , that can be accounted for with a temperature dependent anisotropic Ginzburg-Landau model.
format Preprint
id arxiv_https___arxiv_org_abs_2604_27098
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Phase Stability of Superfluid $^{3}\mathrm{He}$ in Anisotropic Aerogel
Scott, J. W.
Park, D.
Yuan, X.
Halperin, W. P.
Superconductivity
The A and B phases of superfluid 3 He have vector degrees of freedom that reflect their characteristic broken symmetries, respectively chiral and spin-orbit rotation axes. Anisotropic disorder in the superfluid, imbibed in uniformly strained silica aerogel, orients these degrees of freedom, thereby affecting phase stability. These degrees of freedom have been found to spontaneously reorient at a field-independent transition temperature Tx , that can be accounted for with a temperature dependent anisotropic Ginzburg-Landau model.
title Phase Stability of Superfluid $^{3}\mathrm{He}$ in Anisotropic Aerogel
topic Superconductivity
url https://arxiv.org/abs/2604.27098