论文标题

电子量子隧道传感器

Electron Quantum Tunneling Sensors

论文作者

Banerjee, Aishwaryadev, Mastrangelo, Carlos H.

论文摘要

量子隧道传感器通常是超敏感的设备,专门设计用于使用奇妙的量子机械隧道原理将刺激转换为电子信号。在1990年代初期,威廉·凯瑟(William Kaiser)开发了最早的微机械量子隧道传感器之一,作为他在NASA喷气推进实验室工作的一部分。从那时起,就已经进行了利用这种现象来开发各种物理和化学传感器的尝试。尽管这些设备表现出独特的特征,例如高灵敏度,但量子隧道的原理通常充当双刃剑,并且负责该传感器家族的某些缺点。在这篇综述中,我们简要解释了量子隧道的基本工作原理,以及它们如何用于设计微型量子隧道传感器。然后,我们开始描述开发此类传感器的各种尝试的概述。接下来,我们讨论他们当前的需求和最近的复兴。最后,我们描述了这些传感器的各种优势和缺点,并结束了对这项技术和前景潜力的洞察力。

Quantum tunneling sensors are typically ultra-sensitive devices which have been specifically designed to convert a stimulus into an electronic signal using the wondrous principles of quantum mechanical tunneling. In the early 1990s, William Kaiser developed one of the first micromachined quantum tunneling sensors as part of his work with the Nasa Jet Propulsion Laboratory. Since then, there have been scattered attempts at utilizing this phenomenon for the development of a variety of physical and chemical sensors. Although these devices demonstrate unique characteristics such as high sensitivity, the principle of quantum tunneling often acts as a double-edged sword and is responsible for certain drawbacks of this sensor family. In this review, we briefly explain the underlying working principles of quantum tunneling and how they are used to design miniaturized quantum tunneling sensors. We then proceed to describe an overview of the various attempts at developing such sensors. Next, we discuss their current need and recent resurgence. Finally, we describe various advantages and shortcomings of these sensors and end this review with an insight into the potential of this technology and prospects.

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