Quantum measurement systems and applications to particle physics and cosmology

IF 1.4 3区 物理与天体物理 Q3 INSTRUMENTS & INSTRUMENTATION
Masashi Hazumi
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引用次数: 0

Abstract

There are new detector proposals and R&D that utilize quantum enhancements not previously adopted. Examples include superconducting quantum sensors, atom interferometry, and quantum spin sensors. They are mainly motivated by industrial applications toward quantum computing, secure quantum communication systems, and high-sensitivity sensors. Given the excellent potential of the new quantum measurement systems, there are also new proposals to apply them in particle physics and cosmology. In this review, I survey currently available and emerging quantum technologies and their applications. I then discuss future directions and new proposals for particle physics and cosmology.
量子测量系统及其在粒子物理和宇宙学中的应用
有新的探测器提案和研发利用了以前未采用的量子增强。例子包括超导量子传感器、原子干涉测量和量子自旋传感器。它们主要受到量子计算、安全量子通信系统和高灵敏度传感器的工业应用的推动。鉴于新的量子测量系统的卓越潜力,也有新的建议将它们应用于粒子物理学和宇宙学。本文综述了现有的和新兴的量子技术及其应用。然后讨论粒子物理学和宇宙学的未来方向和新建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.20
自引率
21.40%
发文量
787
审稿时长
1 months
期刊介绍: Section A of Nuclear Instruments and Methods in Physics Research publishes papers on design, manufacturing and performance of scientific instruments with an emphasis on large scale facilities. This includes the development of particle accelerators, ion sources, beam transport systems and target arrangements as well as the use of secondary phenomena such as synchrotron radiation and free electron lasers. It also includes all types of instrumentation for the detection and spectrometry of radiations from high energy processes and nuclear decays, as well as instrumentation for experiments at nuclear reactors. Specialized electronics for nuclear and other types of spectrometry as well as computerization of measurements and control systems in this area also find their place in the A section. Theoretical as well as experimental papers are accepted.
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