Quantum Chaos of Unitary Fermi Gases in Strong Pairing Fluctuation Region
arXiv:2002.05759 · doi:10.1103/PhysRevB.102.045123
Abstract
The growth rate of the out-of-time-ordered correlator in a N-flavor Fermi gas is investigated and the Lyapunove exponent is calculated to the order of . We find that the Lyapunove exponent monotonically increases as the the interaction strength increases from the BCS limit to the unitary region. At the unitarity the Lyapunove exponent increases while the temperature drops and it can reach to the order of around the critical temperature for the case. The system scrambles faster for stronger pairing fluctuations. At the BCS limit, the Lyapunov exponent behaviors as .
7 pages, 4 Figures
References in corpus (7)
- Thermalization and its mechanism for generic isolated quantum systems
- Toward an AdS/cold atoms correspondence: a geometric realization of the Schroedinger symmetry
- Gravity duals for non-relativistic CFTs
- Microscopic model of quantum butterfly effect: out-of-time-order correlators and traveling combustion waves
- Quantum chaos on a critical Fermi surface
- Measurement of many-body chaos using a quantum clock
- Anomalous Conductance of a strongly interacting Fermi Gas through a Quantum Point Contact