Vacuum Tunneling Transistor with Nano Vacuum Chamber for Harsh Environments

真空室 超高真空 光电子学 材料科学 晶体管 真空度 量子隧道 真空管 托尔 假真空 真空电弧 纳米技术 真空蒸发 阴极 电压 电气工程 物理 复合材料 薄膜 粒子物理学 工程类 热力学 量子力学
作者
Su Jin Heo,Jeong Hee Shin,Byoung Ok Jun,Jae Eun Jang
出处
期刊:ACS Nano [American Chemical Society]
卷期号:17 (20): 19696-19708 被引量:16
标识
DOI:10.1021/acsnano.3c02916
摘要

A nano vacuum tube which consists of a vacuum transistor and a nano vacuum chamber was demonstrated. For the device, a vacuum region is an electron transport channel, and a vacuum is a tunneling barrier. Tilted angle evaporation was studied for the formation of the nano level vacuum chamber structure. This vacuum tube was ultraminiaturized with several tens of 10-18 L scale volume and 10-6 Torr of pressure. The device structure made it possible to achieve a high integration density and to sustain the vacuum state in various real operations. In particular, the vacuum transistor performed stably in extreme external environments because the tunneling mechanism showed a wide range of working stability. The vacuum was sustained well by the sealing layer and provided a defect-free tunneling junction. In tests, the high vacuum level was maintained for more than 15 months with high reliability. The Al sealing layer and tube structure can effectively block exposed light such as visible light and UV, enabling the stable operation of the tunneling transistor. In addition, it is estimated that the structure blocks approximately 5 keV of X-ray. The device showed stable operating characteristics in a wide temperature range of 100-390 K. Therefore, the vacuum tube can be used in a wide range of applications involving integrated circuits while resolving the disadvantages of a large volume in old vacuum tubes. Additionally, it can be an important solution for next-generation devices in various fields such as aerospace, artificial intelligence, and THz applications.
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