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Efficient Quantum Simulation of Open Quantum System Dynamics on Noisy Quantum Computers

Efficient Quantum Simulation of Open Quantum System Dynamics on Noisy Quantum Computers

来源:Arxiv_logoArxiv
英文摘要

Quantum simulation represents the most promising quantum application to demonstrate quantum advantage on near-term noisy intermediate-scale quantum (NISQ) computers, yet available quantum simulation algorithms are prone to errors and thus difficult to be realized. Herein, we propose a novel scheme to utilize intrinsic gate errors of NISQ devices to enable controllable simulation of open quantum system dynamics without ancillary qubits or explicit bath engineering, thus turning unwanted quantum noises into useful quantum resources. Specifically, we simulate energy transfer process in a photosynthetic dimer system on IBM-Q cloud. By employing designed decoherence-inducing gates, we show that quantum dissipative dynamics can be simulated efficiently across coherent-to-incoherent regimes with results comparable to those of the numerically-exact classical method. Moreover, we demonstrate a calibration routine that enables consistent and predictive simulations of open-quantum system dynamics in the intermediate coupling regime. This work provides a new direction for quantum advantage in the NISQ era.

Shin Sun、Li-Chai Shih、Yuan-Chung Cheng

10.1088/1402-4896/ad1c27

物理学计算技术、计算机技术

Shin Sun,Li-Chai Shih,Yuan-Chung Cheng.Efficient Quantum Simulation of Open Quantum System Dynamics on Noisy Quantum Computers[EB/OL].(2021-06-24)[2025-07-21].https://arxiv.org/abs/2106.12882.点此复制

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