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Non-Thermal Fixed Points in Bose Gas Experiments

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Author(s):
Madeira, Lucas ; Bagnato, Vanderlei S.
Total Authors: 2
Document type: Journal article
Source: SYMMETRY-BASEL; v. 14, n. 4, p. 11-pg., 2022-04-01.
Abstract

One of the most challenging tasks in physics has been understanding the route an out-of-equilibrium system takes to its thermalized state. This problem can be particularly overwhelming when one considers a many-body quantum system. However, several recent theoretical and experimental studies have indicated that some far-from-equilibrium systems display universal dynamics when close to a so-called non-thermal fixed point (NTFP), following a rescaling of both space and time. This opens up the possibility of a general framework for studying and categorizing out-of-equilibrium phenomena into well-defined universality classes. This paper reviews the recent advances in observing NTFPs in experiments involving Bose gases. We provide a brief introduction to the theory behind this universal scaling, focusing on experimental observations of NTFPs. We present the benefits of NTFP universality classes by analogy with renormalization group theory in equilibrium critical phenomena. (AU)

FAPESP's process: 18/09191-7 - Vortices and turbulence in strongly interacting quantum fluids and their mixtures
Grantee:Lucas Madeira
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 14/50857-8 - National Institute in Basic Optics and Applied to Life Sciences
Grantee:Vanderlei Salvador Bagnato
Support Opportunities: Research Projects - Thematic Grants
FAPESP's process: 13/07276-1 - CEPOF - Optics and Photonic Research Center
Grantee:Vanderlei Salvador Bagnato
Support Opportunities: Research Grants - Research, Innovation and Dissemination Centers - RIDC