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General Vacuum Electronics

机译:通用真空电子

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摘要

The electron devices in which electrons do not collide with other particles or in which the collision probability is very small in the transport process can be theoretically regarded as general vacuum electron devices. General vacuum electron devices include micro-fabricated vacuum nano-electronic devices, which can work in atmosphere, and some solid-state electron devices with nanoscale channel for electrons whose material characteristics are close to those of vacuum channels. Vacuum nano-electron devices (e.g., nanotriodes) are expected to be the fundamental elements for high-speed, radiation-resistant large-scale vacuum integrated circuits. The solid-state electron devices with spin semiconductor materials, multiferroics or topological crystal insulators are quite different from traditional semiconductor devices and are expected to operate under novel principles. Understanding vacuum electron devices from a microcosmic perspective and understanding solid-state electron devices from a vacuum perspective will promote a union of vacuum electronics and microelectronics, as well as the formation and development of general vacuum electronics.
机译:从理论上讲,在传输过程中电子不与其他粒子碰撞或碰撞几率很小的电子器件可以看作是一般的真空电子器件。普通的真空电子器件包括可以在大气中工作的微型真空纳米电子器件,以及一些具有纳米级通道的固态电子器件,其电子特性与真空通道的材料特性接近。真空纳米电子器件(例如,纳米三极管)有望成为高速,耐辐射的大规模真空集成电路的基本元件。具有自旋半导体材料,多铁性金属或拓扑晶体绝缘体的固态电子器件与传统半导体器件有很大不同,并且有望在新原理下运行。从微观的角度理解真空电子器件,从真空的角度理解固态电子器件将促进真空电子学和微电子学的结合,以及一般真空电子学的形成和发展。

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