Recent studies have revealed intriguing similarities between the contribution of wormholes to the gravitational path integral and the phenomenon of replica symmetry breaking observed in spin glasses and other disordered systems. Interestingly, these configurations may also be important for the explanation of the information paradox of quantum black holes. Motivated by these developments, we investigate the thermodynamic properties of a $PT$-symmetric system composed of two random non-Hermitian Hamiltonians with no explicit coupling between them. After performing ensemble averaging, we identify numerically and analytically a robust first-order phase transition in the free energy of two models with quantum chaotic dynamics: the elliptic Ginib...
The Quantum Random Energy Model (QREM) is a random matrix of Anderson-type which describes effects o...
We study a version of the 2-body Sachdev-Ye-Kitaev (SYK$_{2}$) model with complex fermions coupled t...
Non-hermitian systems have gained a lot of interest in recent years. However, notions of chaos and l...
Recent studies have revealed intriguing similarities between the contribution of wormholes to the gr...
© 2022 authors. Published by the American Physical Society.We show that, after ensemble averaging, t...
It is widely expected that systems which fully thermalize are chaotic in the sense of exhibiting ran...
We analyze a two-body nonhermitian two-site Sachdev-Ye-Kitaev model with the couplings of one site c...
Thermodynamics constrains changes to the energy of a system, both deliberate and random, via its fir...
We study unitary evolution of bipartite entanglement in a circuit with nearest-neighbor random gates...
We study a system of strongly correlated bosons with off-diagonal disorder, i.e., randomness in the ...
We study a two-site Sachdev-Ye-Kitaev model with complex couplings and a weak inter-site interaction...
We introduce and study the disordered Dicke model in which the spin-boson couplings are drawn from a...
We demonstrate that in a class of disordered quantum systems the dynamical partition function is not...
We study the nonequilibrium quench dynamics of a mixed Sachdev-Ye-Kitaev model, with competing two b...
We study the stability of non-ergodic but extended (NEE) phases in non-Hermitian systems. For this p...
The Quantum Random Energy Model (QREM) is a random matrix of Anderson-type which describes effects o...
We study a version of the 2-body Sachdev-Ye-Kitaev (SYK$_{2}$) model with complex fermions coupled t...
Non-hermitian systems have gained a lot of interest in recent years. However, notions of chaos and l...
Recent studies have revealed intriguing similarities between the contribution of wormholes to the gr...
© 2022 authors. Published by the American Physical Society.We show that, after ensemble averaging, t...
It is widely expected that systems which fully thermalize are chaotic in the sense of exhibiting ran...
We analyze a two-body nonhermitian two-site Sachdev-Ye-Kitaev model with the couplings of one site c...
Thermodynamics constrains changes to the energy of a system, both deliberate and random, via its fir...
We study unitary evolution of bipartite entanglement in a circuit with nearest-neighbor random gates...
We study a system of strongly correlated bosons with off-diagonal disorder, i.e., randomness in the ...
We study a two-site Sachdev-Ye-Kitaev model with complex couplings and a weak inter-site interaction...
We introduce and study the disordered Dicke model in which the spin-boson couplings are drawn from a...
We demonstrate that in a class of disordered quantum systems the dynamical partition function is not...
We study the nonequilibrium quench dynamics of a mixed Sachdev-Ye-Kitaev model, with competing two b...
We study the stability of non-ergodic but extended (NEE) phases in non-Hermitian systems. For this p...
The Quantum Random Energy Model (QREM) is a random matrix of Anderson-type which describes effects o...
We study a version of the 2-body Sachdev-Ye-Kitaev (SYK$_{2}$) model with complex fermions coupled t...
Non-hermitian systems have gained a lot of interest in recent years. However, notions of chaos and l...