THz microscope for three-dimensional imaging with superconducting Josephson junctions.

M. Tollkühn, P. J. Ritter, M. Schilling, B. Hampel
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引用次数: 8

Abstract

Superconducting Josephson junctions have a wide range of applications ranging from quantum computing to voltage standards, and they may also be employed as versatile sensors for high-frequency radiation and magnetic fields. In this work, we present a unique measurement setup utilizing a single Josephson junction on a cantilever for high-resolution spatial measurements of spectroscopically resolved THz and microwave field distributions. This THz microscope can be utilized to measure power and frequency of electromagnetic radiation from ∼1 GHz to 5 THz. It may also be used to measure static magnetic fields and provide topological scans of samples. The samples can be both actively radiating or passively irradiated at either room temperature or cryogenic temperatures. We review the measurement setup of the THz microscope and describe the evaluation of its measurement data to achieve three-dimensional visualizations of the field distributions. The diverse capabilities of this unique tool are demonstrated by its different measurement modes with measurements of field distributions at 20 GHz and 1.4 THz, spectroscopically resolved THz measurements, and magnetic field measurements.
用于超导约瑟夫森结三维成像的太赫兹显微镜。
超导约瑟夫森结具有广泛的应用范围,从量子计算到电压标准,它们也可以用作高频辐射和磁场的多功能传感器。在这项工作中,我们提出了一种独特的测量装置,利用悬臂上的单个约瑟夫森结,用于光谱分辨太赫兹和微波场分布的高分辨率空间测量。这种太赫兹显微镜可以用来测量从1 GHz到5太赫兹的电磁辐射的功率和频率。它也可用于测量静态磁场和提供样品的拓扑扫描。样品可以在室温或低温下进行主动辐射或被动辐射。我们回顾了太赫兹显微镜的测量设置,并描述了其测量数据的评估,以实现场分布的三维可视化。这种独特工具的多种功能通过其不同的测量模式得到了证明,包括20 GHz和1.4太赫兹的场分布测量、光谱分辨太赫兹测量和磁场测量。
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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