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20172026
most citedMany-body quantum chaos and emergence of Ginibre ensemble

44 citations · 147 across the 10 of their papers we have counts for

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14 papers · 1 filter

cond-mat.stat-mech2026

Topological spectral form factor reveals emergent non-Hermitian single-particle transitions from many-body quantum chaos

Daniel Harkin, Chun Y. Leung, Amos Chan

In equilibrium, topological defect insertions in quantum and classical partition functions provide non-perturbative probes of phase transitions beyond local observables. In non-equ…

cond-mat.stat-mech2025

Many-body quantum chaos and time reversal symmetry

Weijun Wu, Saumya Shivam, Amos Chan

We investigate universal signatures of quantum chaos in the presence of time reversal symmetry (TRS) in generic many body quantum chaotic systems (gMBQCs). We study three classes o…

cond-mat.stat-mech2024★ 1 cited

Spectral form factor in chaotic, localized, and integrable open quantum many-body systems

Jiachen Li, Stephen Yan, Tomaž Prosen +1

We numerically study the spectral statistics of open quantum many-body systems (OQMBS) as signatures of quantum chaos (or the lack thereof), using the dissipative spectral form fac…

cond-mat.stat-mech2024★ 5 cited

Universal distributions of overlaps from generic dynamics in quantum many-body systems

Alexios Christopoulos, Amos Chan, Andrea De Luca

We study the distribution of overlaps with the computational basis of a quantum state generated under generic quantum many-body chaotic dynamics, without conserved quantities, for…

cond-mat.stat-mech2022★ 44 cited

Many-body quantum chaos and emergence of Ginibre ensemble

Saumya Shivam, Andrea De Luca, David A. Huse +1

We show that non-Hermitian Ginibre random matrix behaviors emerge in spatially-extended many-body quantum chaotic systems in the space direction, just as Hermitian random matrix be…

cond-mat.stat-mech2021

Many-Body Quantum Chaos and Space-time Translational Invariance

Amos Chan, Saumya Shivam, David A. Huse +1

We study the consequences of having translational invariance in space and in time in many-body quantum chaotic systems. We consider an ensemble of random quantum circuits, composed…