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Dissipative engineering is a powerful tool for quantum state preparation, and has drawn significant attention in quantum algorithms and quantum many-body physics in recent years.
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Žnidarič, M · 2015
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Kastoryano, M. J. & Brandao, F. G · 2016
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Thermalization time bounds for Pauli stabilizer Hamiltonians
Temme, K · 2017
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Adiabatic quantum computation
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Generalized unitary coupled cluster wave functions for quantum computation
Lee, J., Huggins, W. J., Head-Gordon, M. & Whaley, K. B · 2018
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Solving quasi-free and quadratic lindblad master equations for open fermionic and bosonic systems
Barthel, T. & Zhang, Y · 2022
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Twenty years of auxiliary-field quantum monte carlo in quantum chemistry: An overview and assessment on main group chemistry and bond-breaking
Lee, J., Pham, H. Q. & Reichman, D. R · 2022
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Quantum-jump vs stochastic schrödinger dynamics for gaussian states with quadratic Hamiltonians and linear Lindbladians
Christie, R., Eastman, J., Schubert, R. & Graefe, E.-M · 2022
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Even shorter quantum circuit for phase estimation on early fault-tolerant quantum computers with applications to ground-state energy estimation
Ding, Z. & Lin, L · 2023
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PySCF: the Python-based simulations of chemistry framework
Sun, Q. et al · 2018
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Quantum phase estimation of multiple eigenvalues for small-scale (noisy) experiments
O’Brien, T. E., Tarasinski, B. & Terhal, B. M · 2019
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Faster ground state preparation and high-precision ground energy estimation with fewer qubits
Ge, Y., Tura, J. & Cirac, J. I · 2019
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Variational ansatz-based quantum simulation of imaginary time evolution
McArdle, S. et al · 2019
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Lecture notes on the theory of open quantum systems
Lidar, D. A · 2019
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Determining eigenstates and thermal states on a quantum computer using quantum imaginary time evolution
Motta, M. et al · 2020
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Dissipative ground state preparation and the dissipative quantum eigensolver
Cubitt, T. S · 2023
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Dissipative preparation and stabilization of many-body quantum states in a superconducting qutrit array
Wang, Y., Snizhko, K., Romito, A., Gefen, Y. & Murch, K · 2023
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Experimental demonstration of the advantage of adaptive quantum circuits
Foss-Feig, M. et al · 2023
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Non-Abelian Floquet Spin Liquids in a Digital Rydberg Simulator
Kalinowski, M., Maskara, N. & Lukin, M. D · 2023
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Fast thermalization from the eigenstate thermalization hypothesis
Chen, C.-F. & Brandão, F. G. S. L · 2023
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Thermal State Preparation via Rounding Promises
Rall, P., Wang, C. & Wocjan, P · 2023
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Quantum thermal state preparation
Chen, C.-F., Kastoryano, M. J., Brandão, F. G. & Gilyén, A · 2023
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An efficient and exact noncommutative quantum Gibbs sampler
Chen, C.-F., Kastoryano, M. J. & Gilyén, A · 2023
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Rapid thermalization of spin chain commuting Hamiltonians
Bardet, I. et al · 2023
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Complexity of implementing trotter steps
Low, G. H., Su, Y., Tong, Y. & Tran, M. C · 2023
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Rapid initial state preparation for the quantum simulation of strongly correlated molecules
Berry, D. W. et al · 2024
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Single-ancilla ground state preparation via Lindbladians
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Efficient quantum Gibbs samplers with Kubo–Martin–Schwinger detailed balance condition
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Quantum generalizations of Glauber and Metropolis dynamics
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Polynomial-time preparation of low-temperature Gibbs states for 2d toric code
Ding, Z., Li, B., Lin, L. & Zhang, R · 2024
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Entropy decay for davies semigroups of a one dimensional quantum lattice
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Walking through hilbert space with quantum computers
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Rapid quantum ground state preparation via dissipative dynamics
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