Quantum thermal state preparation for near-term quantum processors
Quantum thermal state preparation for near-term quantum processors
Preparation of quantum thermal states of many-body systems is a key computational challenge for quantum processors, with applications in physics, chemistry, and classical optimization. We provide a simple and efficient algorithm for thermal state preparation, combining engineered bath resetting and modulated system-bath coupling to derive a quantum channel approximately satisfying quantum detailed balance relations. We show that the fixed point $\hatÏ$ of the channel approximates the Gibbs state as $\|\hatÏ-\hatÏ_β\|\sim θ^2$, where $θ$ is the system-bath coupling and $\hatÏ_β\propto e^{-β\hat H_S}$. We provide extensive numerics, for the example of the 2D Quantum Ising model, confirming that the protocol successfully prepares the thermal state throughout the finite-temperature phase diagram, including near the quantum phase transition. Our algorithm provides a path to efficient quantum simulation of quantum-correlated states at finite temperature with current and near-term quantum processors.
Jerome Lloyd、Dmitry A. Abanin
物理学
Jerome Lloyd,Dmitry A. Abanin.Quantum thermal state preparation for near-term quantum processors[EB/OL].(2025-06-26)[2025-07-09].https://arxiv.org/abs/2506.21318.点此复制
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