Non-hermitian physics

Y Ashida, Z Gong, M Ueda - Advances in Physics, 2020 - Taylor & Francis
A review is given on the foundations and applications of non-Hermitian classical and
quantum physics. First, key theorems and central concepts in non-Hermitian linear algebra …

Many-body localization in the age of classical computing

P Sierant, M Lewenstein, A Scardicchio… - Reports on Progress …, 2025 - iopscience.iop.org
Statistical mechanics provides a framework for describing the physics of large, complex
many-body systems using only a few macroscopic parameters to determine the state of the …

Tools for quantum simulation with ultracold atoms in optical lattices

F Schäfer, T Fukuhara, S Sugawa, Y Takasu… - Nature Reviews …, 2020 - nature.com
After many years of development of the basic tools, quantum simulation with ultracold atoms
has now reached the level of maturity at which it can be used to investigate complex …

Probing entanglement in a many-body–localized system

A Lukin, M Rispoli, R Schittko, ME Tai, AM Kaufman… - Science, 2019 - science.org
An interacting quantum system that is subject to disorder may cease to thermalize owing to
localization of its constituents, thereby marking the breakdown of thermodynamics. The key …

[HTML][HTML] Many-body localization: An introduction and selected topics

F Alet, N Laflorencie - Comptes Rendus Physique, 2018 - Elsevier
What happens in an isolated quantum system when both disorder and interactions are
present? Over the recent years, the picture of a non-thermalizing phase of matter, the many …

Quantum equilibration, thermalization and prethermalization in ultracold atoms

M Ueda - Nature Reviews Physics, 2020 - nature.com
Over the past decade, there has been remarkable progress in our understanding of
equilibration, thermalization and prethermalization, due in large part to experimental …

Entanglement transition from variable-strength weak measurements

M Szyniszewski, A Romito, H Schomerus - Physical Review B, 2019 - APS
We show that weak measurements can induce a quantum phase transition of interacting
many-body systems from an ergodic thermal phase with a large entropy to a nonergodic …

Non-Hermitian many-body localization

R Hamazaki, K Kawabata, M Ueda - Physical review letters, 2019 - APS
Many-body localization is shown to suppress the imaginary parts of complex eigenenergies
for general non-Hermitian Hamiltonians having time-reversal symmetry. We demonstrate …

Non-stationary coherent quantum many-body dynamics through dissipation

B Buča, J Tindall, D Jaksch - Nature Communications, 2019 - nature.com
The assumption that quantum systems relax to a stationary state in the long-time limit
underpins statistical physics and much of our intuitive understanding of scientific …

QuSpin: a Python package for dynamics and exact diagonalisation of quantum many body systems. Part II: bosons, fermions and higher spins

P Weinberg, M Bukov - SciPost Physics, 2019 - scipost.org
We present a major update to QuSpin, SciPostPhys. 2.1. 003--an open-source Python
package for exact diagonalization and quantum dynamics of arbitrary boson, fermion and …