JOURNAL ARTICLE

Deep Reinforcement Learning Control of Quantum Cartpoles

Zhikang T. WangYuto AshidaMasahito Ueda

Year: 2020 Journal:   Physical Review Letters Vol: 125 (10)Pages: 100401-100401   Publisher: American Physical Society

Abstract

We generalize a standard benchmark of reinforcement learning, the classical cartpole balancing problem, to the quantum regime by stabilizing a particle in an unstable potential through measurement and feedback. We use state-of-the-art deep reinforcement learning to stabilize a quantum cartpole and find that our deep learning approach performs comparably to or better than other strategies in standard control theory. Our approach also applies to measurement-feedback cooling of quantum oscillators, showing the applicability of deep learning to general continuous-space quantum control.

Keywords:
Reinforcement learning Benchmark (surveying) Computer science Quantum Deep learning Reinforcement Quantum state Control (management) Artificial intelligence Quantum mechanics Physics Engineering

Metrics

63
Cited By
5.73
FWCI (Field Weighted Citation Impact)
60
Refs
0.96
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Neural Networks and Reservoir Computing
Physical Sciences →  Computer Science →  Artificial Intelligence
Quantum Information and Cryptography
Physical Sciences →  Computer Science →  Artificial Intelligence
Quantum and electron transport phenomena
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

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