A-B Transition in Superfluid 3He and Cosmological Phase Transitions

被引:0
作者
Hindmarsh, Mark [1 ,2 ,3 ]
Sauls, J. A. [4 ]
Zhang, Kuang [1 ,2 ,3 ]
Autti, S. [5 ]
Haley, Richard P. [5 ]
Heikkinen, Petri J. [6 ]
Huber, Stephan J. [1 ]
Levitin, Lev V. [6 ]
Lopez-Eiguren, Asier [7 ,8 ]
Mayer, Adam J. [5 ]
Rummukainen, Kari [2 ,3 ]
Saunders, John [6 ]
Zmeev, Dmitry [5 ]
机构
[1] Univ Sussex, Dept Phys & Astron, Brighton BN1 9QH, England
[2] Univ Helsinki, Dept Phys, POB 64,Gustaf Hallstromin Katu 2, FI-00014 Helsinki, Finland
[3] Univ Helsinki, Helsinki Inst Phys, POB 64,Gustaf Hallstromin Katu 2, FI-00014 Helsinki, Finland
[4] Louisiana State Univ, Hearne Inst Theoret Phys, Dept Phys & Astron, Baton Rouge, LA 70803 USA
[5] Univ Lancaster, Dept Phys, Lancaster LA1 4YB, England
[6] Royal Holloway Univ London, Dept Phys, Egham TW20 0EX, England
[7] Univ Basque Country UPV EHU, Dept Phys, Bilbao 48080, Spain
[8] Univ Basque Country UPV EHU, EHU Quantum Ctr, Leioa, Spain
基金
英国科学技术设施理事会;
关键词
Helium; 3; Phase transitions; Time-dependent Ginzburg-Landau equation; Cosmology; Early universe; Gravitational waves; PARTICLE PHYSICS; ORDER-PARAMETER; FALSE VACUUM; SYMMETRY-BREAKING; SURFACE-ENERGY; BUBBLE-GROWTH; ZERO SOUND; NUCLEATION; TEMPERATURE; VORTICES;
D O I
10.1007/s10909-024-03151-9
中图分类号
O59 [应用物理学];
学科分类号
摘要
First-order phase transitions in the very early universe are a prediction of many extensions of the Standard Model of particle physics and could provide the departure from equilibrium needed for a dynamical explanation of the baryon asymmetry of the Universe. They could also produce gravitational waves of a frequency observable by future space-based detectors such as the Laser Interferometer Space Antenna. All calculations of the gravitational wave power spectrum rely on a relativistic version of the classical nucleation theory of Cahn-Hilliard and Langer, due to Coleman and Linde. The high purity and precise control of pressure and temperature achievable in the laboratory made the first-order A to B transition of superfluid He-3 ideal for test of classical nucleation theory. As Leggett and others have noted, the theory fails dramatically. The lifetime of the metastable A phase is measurable, typically of order minutes to hours, far faster than classical nucleation theory predicts. If the nucleation of B phase from the supercooled A phase is due to a new, rapid intrinsic mechanism that would have implications for first-order cosmological phase transitions as well as predictions for gravitational wave production in the early universe. Here we discuss studies of the A-B phase transition dynamics in He-3, both experimental and theoretical, and show how the computational technology for cosmological phase transition can be used to simulate the dynamics of the A-B transition, support the experimental investigations of the A-B transition in the QUEST-DMC collaboration with the goal of identifying and quantifying the mechanism(s) responsible for nucleation of stable phases in ultra-pure metastable quantum phases.
引用
收藏
页码:495 / 524
页数:30
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