Search for fast-oscillating fundamental constants with space missions

IF 5.8 2区 物理与天体物理 Q1 OPTICS
Dmitry Budker, Joshua Eby, Marianna S. Safronova, Oleg Tretiak
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引用次数: 0

Abstract

While it is possible to estimate the dark matter density at the Sun distance from the galactic center, this does not give information on actual dark matter density in the Solar system. There can be considerable local enhancement of dark matter density in the vicinity of gravitating centers, including the Sun, the Earth, as well as other planets in the solar system. Generic mechanisms for the formation of such halos were recently elucidated. In this work, we studies the possible halo dark matter overdensities and corresponding dark matter masses allowed for various objects in the solar system. We explore spacecraft missions to detect such halos with instruments such as quantum clocks, atomic and molecular spectrometers designed to search for fast (tens of hertz to gigahertz) oscillations of fundamental constants, highly sensitive comagnetometers, and other quantum sensors and sensor networks.

在太空任务中寻找快速振荡的基本常数
虽然有可能估算出距离银河系中心太阳距离处的暗物质密度,但这并不能提供太阳系中实际暗物质密度的信息。在引力中心附近,包括太阳、地球以及太阳系中的其他行星,暗物质密度可能会有相当大的局部增强。这种光晕形成的一般机制最近得到了阐明。在这项工作中,我们研究了太阳系中各种物体可能存在的晕暗物质超密度和相应的暗物质质量。我们探索用量子钟、原子和分子光谱仪等仪器探测这种光晕的航天器任务,这些仪器旨在寻找基本常数的快速(几十赫兹到千兆赫)振荡、高灵敏度的磁强计和其他量子传感器和传感器网络。
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来源期刊
EPJ Quantum Technology
EPJ Quantum Technology Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
7.70
自引率
7.50%
发文量
28
审稿时长
71 days
期刊介绍: Driven by advances in technology and experimental capability, the last decade has seen the emergence of quantum technology: a new praxis for controlling the quantum world. It is now possible to engineer complex, multi-component systems that merge the once distinct fields of quantum optics and condensed matter physics. EPJ Quantum Technology covers theoretical and experimental advances in subjects including but not limited to the following: Quantum measurement, metrology and lithography Quantum complex systems, networks and cellular automata Quantum electromechanical systems Quantum optomechanical systems Quantum machines, engineering and nanorobotics Quantum control theory Quantum information, communication and computation Quantum thermodynamics Quantum metamaterials The effect of Casimir forces on micro- and nano-electromechanical systems Quantum biology Quantum sensing Hybrid quantum systems Quantum simulations.
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