计算机科学
可扩展性
利用
油藏计算
光子学
量子
实施
分布式计算
希尔伯特空间
协议(科学)
噪音(视频)
理想(伦理)
量子计算机
计算机工程
理论计算机科学
物理
人工智能
量子力学
软件工程
计算机安全
数据库
循环神经网络
人工神经网络
图像(数学)
医学
哲学
替代医学
认识论
病理
作者
Jorge García‐Beni,Gian Luca Giorgi,Miguel C. Soriano,Roberta Zambrini
标识
DOI:10.1103/physrevapplied.20.014051
摘要
Quantum Reservoir Computing (QRC) exploits the information processing capabilities of quantum systems to solve non-trivial temporal tasks, improving over their classical counterparts. Recent progress has shown the potential of QRC exploiting the enlarged Hilbert space, but real-time processing and the achievement of a quantum advantage with efficient use of resources are prominent challenges towards viable experimental realizations. In this work, we propose a photonic platform suitable for real-time QRC based on a physical ensemble of reservoirs in the form of identical optical pulses recirculating through a closed loop. While ideal operation achieves maximum capacities, statistical noise is shown to undermine a quantum advantage. We propose a strategy to overcome this limitation and sustain the QRC performance when the size of the system is scaled up. The platform is conceived for experimental implementations to be viable with current technology.
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