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Lindblad dynamics and other open-system dynamics provide a promising path towards efficient Gibbs sampling on quantum computers.
The finite group velocity of quantum spin systems
Elliott H. Lieb and Derek W. Robinson · 1972
Earlier work this paper cites.
Advanced Combinatorics: The Art of Finite and Infinite Expansions
L. Comtet · 1974
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Markovian master equations
E. Brian Davies · 1974
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On the detailed balance condition for non-hamiltonian systems
Robert Alicki · 1976
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Properties of the eigenvectors of persymmetric matrices with applications to communication theory
Antonio Cantoni and Paul Butler · 1976
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Quantum theory of open systems
E. Brian Davies · 1976
Earlier work this paper cites.
Completely positive dynamical semigroups of n n -level systems
Vittorio Gorini, Andrzej Kossakowski, and Ennackal Chandy George Sudarshan · 1976
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On the generators of quantum dynamical semigroups
Goran Lindblad · 1976
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Quantum detailed balance and KMS condition
Andrzej Kossakowski, Alberto Frigerio, Vittorio Gorini, and Maurizio Verri · 1977
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Generators of dynamical semigroups
E. Brian Davies · 1979
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Francisco Barahona · 1982
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The theory of open quantum systems
Heinz-Peter Breuer and Francesco Petruccione · 2002
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Daan Frenkel and Berend Smit · 2002
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Alexei Yu Kitaev, Alexander Shen, and Mikhail N. Vyalyi · 2002
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Lieb-schultz-mattis in higher dimensions
M. B. Hastings · 2004
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Matthew B. Hastings and Tohru Koma · 2006
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Lieb-robinson bounds and the exponential clustering theorem
Bruno Nachtergaele and Robert Sims · 2006
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Derivative polynomials for tanh, tan, sech and sec in explicit form
Khristo N. Boyadzhiev · 2007
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Franco Fagnola and Veronica Umanità · 2007
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Introduction to Fourier Analysis and Wavelets
Mark A. Pinsky · 2008
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The power of quantum systems on a line
Dorit Aharonov, Daniel Gottesman, Sandy Irani, and Julia Kempe · 2009
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Preparing ground states of quantum many-body systems on a quantum computer
David Poulin and Pawel Wocjan · 2009
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Generators of KMS symmetric Markov semigroups on symmetry and quantum detailed balance
Franco Fagnola and Veronica Umanità · 2010
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Computational transition at the uniqueness threshold
Allan Sly · 2010
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The χ 2 \chi^{2} -divergence and mixing times of quantum Markov processes
Kristan Temme, Michael James Kastoryano, Mary Beth Ruskai, Michael Marc Wolf, and Frank Verstraete · 2010
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Quantum Metropolis sampling
Kristan Temme, Tobias J. Osborne, Karl G. Vollbrecht, David Poulin, and Frank Verstraete · 2011
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Hamiltonian simulation using linear combinations of unitary operations
Andrew M. Childs and Nathan Wiebe · 2012
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Quantum channels & operations: guided tour. Lecture Notes
Michael M. Wolf · 2012
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Man-Hong Yung and Alán Aspuru-Guzik · 2012
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Quantum logarithmic Sobolev inequalities and rapid mixing
Michael J Kastoryano and Kristan Temme · 2013
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Stability of frustration-free hamiltonians
Spyridon Michalakis and Justyna P Zwolak · 2013
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Quantum algorithm for linear non-unitary dynamics with near-optimal dependence on all parameters
Dong An, Andrew M Childs, and Lin Lin · 2023
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Rapid thermalization of spin chain commuting Hamiltonians
Ivan Bardet, Ángela Capel, Li Gao, Angelo Lucia, David Pérez-García, and Cambyse Rouzé · 2023
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Quantum thermal state preparation
Chi-Fang Chen, Michael J. Kastoryano, Fernando G.S.L. Brandão, and András Gilyén · 2023
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An efficient and exact noncommutative quantum Gibbs sampler
Chi-Fang Chen, Michael J. Kastoryano, and András Gilyén · 2023
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Dissipative ground state preparation and the dissipative quantum eigensolver
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Exponential improvement in precision for simulating sparse hamiltonians
Dominic W Berry, Andrew M Childs, Richard Cleve, Robin Kothari, and Rolando D Somma · 2014
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Quantum Gibbs samplers: The commuting case
Michael J. Kastoryano and Fernando G.S.L. Brandão · 2016
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Global L q L^{q} -gevrey functions and their applications
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Gradient flow and entropy inequalities for quantum markov semigroups with detailed balance
Eric A. Carlen and Jan Maas · 2017
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Efficient quantum algorithms for simulating Lindblad evolution
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Quantum algorithm for simulating real time evolution of lattice hamiltonians
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Simulating Markovian Open Quantum Systems Using Higher-Order Series Expansion
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Thermal state preparation via rounding promises
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Block-encoding structured matrices for data input in quantum computing
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Preparing thermal states on noiseless and noisy programmable quantum processors
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Szegedy walk unitaries for quantum maps
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Polynomial-time classical sampling of high-temperature quantum gibbs states
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Criteria for Davies irreducibility of Markovian quantum dynamics
Yikang Zhang and Thomas Barthel · 2023
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Quantum complexity of the Kronecker coefficients
Sergey Bravyi, Anirban Chowdhury, David Gosset, Vojtěch Havlíček, and Guanyu Zhu · 2024
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