Weizhou Cai; Yuwei Ma; Weiting Wang; Chang-Ling Zou; Luyan Sun · 2021 · Fundamental Research
Paper
Quantum information is vulnerable to environmental noise and experimental imperfections, hindering the reliability of practical quantum information processors. Therefore, quantum error correction (QEC) that can protect quantum information against noise is vital for universal and scalable quantum computation. Among many different experimental platforms, superconducting quantum circuits and bosonic encodings in superconducting microwave modes are appealing for their unprecedented potential in QEC. During the last few years, bosonic QEC is demonstrated to reach the break-even point, i.e. the lifetime of a logical qubit is enhanced to exceed that of any individual components composing the experimental system. Beyond that, universal gate sets and fault-tolerant operations on the bosonic codes are also realized, pushing quantum information processing towards the QEC era. In this article, we review the recent progress of the bosonic codes, including the Gottesman-Kitaev-Preskill codes, cat codes, and binomial codes, and discuss the opportunities of bosonic codes in various quantum applications, ranging from fault-tolerant quantum computation to quantum metrology. We also summarize the challenges associated with the bosonic codes and provide an outlook for the potential research directions in the long terms.
Analysis
This review discusses recent advancements in bosonic quantum error correction codes, particularly within superconducting quantum circuits, highlighting their potential for fault-tolerant quantum computation and other applications.
Discovery
V. G. Matsos; C. H. Valahu; M. J. Millican; T. Navickas; X. C. Kolesnikow; M. J. Biercuk; T. R. Tan
Tom Peham; Ludwig Schmid; Lucas Berent; Markus Müller; Robert Wille
Bence Hetényi; James R. Wootton
Hayato Goto
Amara Katabarwa; Katerina Gratsea; Athena Caesura; Peter D. Johnson
Paul V. Klimov; Andreas Bengtsson; Chris Quintana; Alexandre Bourassa; Sabrina Hong; A. Dunsworth; Kevin J. Satzinger; William P. Livingston; Volodymyr Sivak; Murphy Yuezhen Niu; Trond I. Andersen; Yaxing Zhang; Desmond Chik; Zijun Chen; Charles Neill; Catherine Erickson; Alejandro Grajales Dau; A. Megrant; P. Roushan; Alexander N. Korotkov; J. Kelly; Vadim Smelyanskiy; Yu Chen; Hartmut Neven
Source record