Thermalization dynamics and spectral statistics of extended systems with thermalizing boundaries
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[2] Immanuel Bloch,et al. Colloquium : Many-body localization, thermalization, and entanglement , 2018, Reviews of Modern Physics.
[3] Jens Eisert,et al. Equilibration, thermalisation, and the emergence of statistical mechanics in closed quantum systems , 2015, Reports on progress in physics. Physical Society.
[4] T. Prosen,et al. Many-Body Quantum Chaos: Analytic Connection to Random Matrix Theory , 2017, Physical Review X.
[5] T. Prosen,et al. Exact Correlation Functions for Dual-Unitary Lattice Models in 1+1 Dimensions. , 2019, Physical review letters.
[6] M. Berry. Quantizing a classically ergodic system: Sinai's billiard and the KKR method , 1981 .
[7] B. Pozsgay. Quantum quenches and generalized Gibbs ensemble in a Bethe Ansatz solvable lattice model of interacting bosons , 2014, 1407.8344.
[8] Z. Papic,et al. Weak ergodicity breaking from quantum many-body scars , 2017, Nature Physics.
[9] E. M. Stoudenmire,et al. The ITensor Software Library for Tensor Network Calculations , 2020, SciPost Physics Codebases.
[10] M. Fagotti,et al. The Folded Spin-1/2 XXZ Model: I. Diagonalisation, Jamming, and Ground State Properties , 2020, 2009.04995.
[11] T. Prosen,et al. Exact Spectral Form Factor in a Minimal Model of Many-Body Quantum Chaos. , 2018, Physical review letters.
[12] Honghui Zhou. Fractal , 2019, Proceedings of the Seventh International Workshop on Security in Cloud Computing - SCC '19.
[13] T. Prosen,et al. Quantum chaos challenges many-body localization. , 2019, Physical review. E.
[14] P. Calabrese,et al. Introduction to ‘Quantum Integrability in Out of Equilibrium Systems’ , 2016 .
[15] F. Verstraete,et al. Matrix product states and projected entangled pair states: Concepts, symmetries, theorems , 2020, Reviews of Modern Physics.
[16] J. Chalker,et al. Spectral Statistics in Spatially Extended Chaotic Quantum Many-Body Systems. , 2018, Physical review letters.
[17] F. Essler,et al. Quench dynamics and relaxation in isolated integrable quantum spin chains , 2016, 1603.06452.
[18] T. Prosen,et al. Entanglement Spreading in a Minimal Model of Maximal Many-Body Quantum Chaos , 2018, Physical Review X.
[19] O. Bohigas,et al. Characterization of chaotic quantum spectra and universality of level fluctuation laws , 1984 .
[20] S. Garratt,et al. Many-Body Delocalization as Symmetry Breaking. , 2020, Physical review letters.
[21] J. Chalker,et al. Spectral Lyapunov exponents in chaotic and localized many-body quantum systems , 2020, 2012.05295.
[23] M. Lukin,et al. Probing many-body dynamics on a 51-atom quantum simulator , 2017, Nature.
[24] Pavel Kos,et al. Chaos and Ergodicity in Extended Quantum Systems with Noisy Driving. , 2020, Physical review letters.
[25] D. Abanin,et al. Influence Matrix Approach to Many-Body Floquet Dynamics , 2020, 2009.10105.
[26] Keisuke Fujii,et al. Computational power of one- and two-dimensional dual-unitary quantum circuits , 2021, Quantum.
[27] T. Prosen,et al. Eigenstate thermalization in dual-unitary quantum circuits: Asymptotics of spectral functions. , 2021, Physical review. E.
[28] D. Abanin. Many-body localization, thermalization, and entanglement , 2019 .
[29] Tomaz Prosen,et al. Random Matrix Spectral Form Factor of Dual-Unitary Quantum Circuits , 2020, Communications in Mathematical Physics.
[30] Alessandro Silva,et al. Colloquium: Nonequilibrium dynamics of closed interacting quantum systems , 2010, 1007.5331.
[31] R. Sarpong,et al. Bio-inspired synthesis of xishacorenes A, B, and C, and a new congener from fuscol† †Electronic supplementary information (ESI) available. See DOI: 10.1039/c9sc02572c , 2019, Chemical science.
[32] Fractal, Logarithmic, and Volume-Law Entangled Nonthermal Steady States via Spacetime Duality , 2021, Physical Review X.
[33] Katja Klobas,et al. Entanglement dynamics in Rule 54: Exact results and quasiparticle picture , 2021, SciPost Physics.
[34] G. Casati,et al. On the connection between quantization of nonintegrable systems and statistical theory of spectra , 1980 .
[35] J. Chalker,et al. Spectral Statistics and Many-Body Quantum Chaos with Conserved Charge. , 2019, Physical review letters.
[36] Tsuyoshi Murata,et al. {m , 1934, ACML.
[37] T. Prosen,et al. Statistics of the spectral form factor in the self-dual kicked Ising model , 2020, Physical Review Research.
[38] Katja Klobas,et al. Exact relaxation to Gibbs and non-equilibrium steady states in the quantum cellular automaton Rule 54 , 2021, SciPost Physics.
[39] V. Yukalov. Equilibration and thermalization in finite quantum systems , 2011, 1201.2781.
[40] Bruno Bertini,et al. Scrambling in random unitary circuits: Exact results , 2020 .
[41] V. Eisler,et al. Real-time dynamics in a strongly interacting bosonic hopping model: global quenches and mapping to the XX chain , 2016, 1602.03065.
[42] K. Matsuno. Equilibration , 2018, Protobiology.
[43] A. Lamacraft,et al. Unitary circuits of finite depth and infinite width from quantum channels , 2019, Physical Review B.
[44] R. Vasseur,et al. Subdiffusion and Many-Body Quantum Chaos with Kinetic Constraints. , 2021, Physical review letters.
[45] L. Piroli,et al. Exact Thermalization Dynamics in the "Rule 54" Quantum Cellular Automaton. , 2020, Physical review letters.
[46] Operator Entanglement in Local Quantum Circuits I: Chaotic Dual-Unitary Circuits , 2019, 1909.07407.
[47] M. Rigol,et al. From quantum chaos and eigenstate thermalization to statistical mechanics and thermodynamics , 2015, 1509.06411.
[48] J. Eisert,et al. Quantum many-body systems out of equilibrium , 2014, Nature Physics.