论文标题

基于谐振的磁场接收器

Resonant Precession Modulation Based Magnetic Field Receivers

论文作者

Luong, Kevin Quy Tanh, Gu, Wei, Fereidoony, Foad, Yeung, Lap, Yao, Zhi, Wang, Yuanxun Ethan

论文摘要

天线技术提供了无线通信所需的电子设备和电磁波之间的关键接口。该技术在一个多世纪以来一直在相同的一般原则下运行,导致现代进步停滞不前,从根本上限制了可以实现无线通信的潜在应用的程度。本文中,我们提出了一种新型概念,用于使用亚原子旋转的非线性进动动力学。进攻自旋上的电磁波入射将用于调节进动的自旋频率。基于对这些自旋动力学的检测运行的天线可以充分表征入射波,同时与常规天线相比,在实现实质性扩增,更高的敏感性和较小的外形。提出的概念的初步实验实施确立了其可行性,并且已经能够显示出显着的放大和大小优势。

Antenna technology provides the crucial interface between electronic devices and electromagnetic waves required for wireless communications. This technology has operated under largely the same general principles for over a century, resulting in stagnation of advancements in modern times and fundamentally limiting the extent to which potential applications of wireless communications may be realized. Herein we propose a novel concept for antenna operation employing the nonlinear precession dynamics of subatomic spins. An electromagnetic wave incident on a precessing spin will serve to modulate the spin frequency of precession. Antennas operating based on a detection of these spin dynamics are then able to fully characterize the incident wave while achieving substantial amplifications, higher sensitivities, and smaller form factors as compared to conventional antennas. A preliminary experimental implementation of the proposed concept establishes its feasibility and is already able to demonstrate significant amplification and size benefits.

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