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Microwave signal processing using an analog quantum reservoir computer

Physics

Microwave signal processing using an analog quantum reservoir computer

A. Senanian, S. Prabhu, et al.

Dive into groundbreaking research by Alen Senanian and colleagues as they explore a quantum superconducting circuit's potential in microwave signal classification tasks. This innovative approach processes analog signals directly, paving the way for ultra-low-power quantum sensing.... show more
Abstract
Quantum reservoir computing (QRC) has been proposed as a paradigm for performing machine learning with quantum processors where the training takes place in the classical domain, avoiding the issue of barren plateaus in parameterized-circuit quantum neural networks. It is natural to consider using a quantum processor based on microwave superconducting circuits to classify microwave signals that are analog-continuous in time. However, while there have been theoretical proposals of analog QRC, to date QRC has been implemented using the circuit model—imposing a discretization of the incoming signal in time. In this paper we show how a quantum superconducting circuit comprising an oscillator coupled to a qubit can be used as an analog quantum reservoir for a variety of classification tasks, achieving high accuracy on all of them. Our work demonstrates processing of ultra-low-power microwave signals within our superconducting circuit, a step towards achieving a quantum sensing-computational advantage on impinging microwave signals.
Publisher
Nature Communications
Published On
Aug 30, 2024
Authors
Alen Senanian, Sridhar Prabhu, Vladimir Kremenetski, Saswata Roy, Yingkang Cao, Jeremy Kline, Tatsuhiro Onodera, Logan G. Wright, Xiaodi Wu, Valla Fatemi, Peter L. McMahon
Tags
quantum superconducting circuit
microwave signal classification
analog-continuous signals
quantum reservoir computing
sensing-computational advantage
low-power technology
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