首页> 外文期刊>Annalen der Physik >The Global Network of Optical Magnetometers for Exotic physics (GNOME): A novel scheme to search for physics beyond the Standard Model
【24h】

The Global Network of Optical Magnetometers for Exotic physics (GNOME): A novel scheme to search for physics beyond the Standard Model

机译:全球外来物理磁强计网络(GNOME):一种超越标准模型的新型物理搜索方案

获取原文
获取原文并翻译 | 示例
       

摘要

A novel experimental scheme enabling the investigation of transient exotic spin couplings is discussed. The scheme is based on synchronous measurements of opticalmagnetometer signals from several devices operating in magnetically shielded environments in distant locations (>100 km). Although signatures of such exotic couplings may be present in the signal from a single magnetometer, it would be challenging to distinguish them from noise. By analyzing the correlation between signals from multiple, geographically separated magnetometers, it is not only possible to identify the exotic transient but also to investigate its nature. The ability of the network to probe presently unconstrained physics beyond the Standard Model is examined by considering the spin coupling to stable topological defects (e.g., domain walls) of axion-like fields. In the spirit of this research, a brief (~2 hours) demonstration experiment involving two magnetometers located in Krakow and Berkeley (~9000 km separation) is presented and discussion of the data-analysis approaches that may allow identification of transient signals is provided. The prospects of the network are outlined in the last part of the paper.
机译:讨论了能够研究瞬态外来自旋耦合的新型实验方案。该方案基于对在遥远位置(> 100 km)的磁屏蔽环境中运行的多个设备的光磁信号的同步测量。尽管这种磁力耦合器的信号可能出现在来自单个磁力计的信号中,但是将它们与噪声区分开来将是一个挑战。通过分析来自多个地理位置分开的磁力计的信号之间的相关性,不仅可以识别异常瞬态,而且可以研究其本质。通过考虑与轴突状场的稳定拓扑缺陷(例如畴壁)的自旋耦合来检验网络探测超出标准模型的当前不受约束的物理的能力。根据这项研究的精神,提出了一个简短的(约2小时)演示实验,涉及两个位于克拉科夫和伯克利的磁力计(约9000 km),并讨论了可以识别瞬态信号的数据分析方法。本文的最后部分概述了网络的前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号