Magnetic communication by polarization helicity modulation using atomic magnetometers.

I. Fan, S. Knappe, V. Gerginov
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引用次数: 2

Abstract

The radio frequency telecommunication at a kilohertz range through an electrically conductive medium is often impeded by the strong reflection and absorption at the interface. The polarization helicity of the magnetic field can be modulated/demodulated to provide a new communication protocol to potentiality circumvent these issues. Here, a miniature magnetic quantum receiver, capable of simultaneously discriminating the two possible helicities of a magnetic field, is presented. The core physics package constitutes two optically pumped atomic magnetometers. It is shown that a data rate of 500 bits/s with a carrier frequency of 2 kHz can be efficiently demodulated in an unshielded environment, paving a promising route for the future of radio frequency communication through a conductive barrier.
原子磁强计极化螺旋调制磁通信。
通过导电介质进行千赫兹范围内的无线电通信,常常受到界面处强反射和强吸收的阻碍。磁场的极化螺旋度可以调制/解调,从而提供一种新的通信协议来潜在地规避这些问题。本文提出了一种微型磁量子接收器,能够同时识别磁场的两种可能的螺旋度。核心物理包由两个光泵原子磁强计组成。结果表明,在无屏蔽环境下,载波频率为2khz的500比特/秒的数据速率可以有效解调,为未来通过导电屏障的射频通信铺平了一条有前途的道路。
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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