首页> 外文期刊>International Journal of High Speed Electronics and Systems: Devices, Integrated Circuits and Systems, Optical and Quantum Electronics >TOWARD ULTRA-LOW POWER III-V QUANTUM LARGE SCALE INTEGRATED CIRCUITS FOR UBIQUITOUS NETWORK ERA
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TOWARD ULTRA-LOW POWER III-V QUANTUM LARGE SCALE INTEGRATED CIRCUITS FOR UBIQUITOUS NETWORK ERA

机译:面向UBIQUITOUS网络时代的超低功耗III-V量子大规模集成电路

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摘要

In an attempt to realize tiny "knowledge vehicles" called intelligent quantum (IQ) chips for use in the coming ubiquitous network society, this paper presents the present status and future prospects of ultra-small-size and ultra-low-power III-V quantum logic large scale integrated circuits based on a novel hexagonal binary-decision diagram (BDD) quantum circuit architecture. Here, quantum transport in path switching node devices formed on III-V semiconductor-based hexagonal nanowire networks is controlled by nanometer scale Schottky wrap gates (WPGs) to realize arbitrary combinational logic function. Feasibility of the approach is shown through fabrication of basic node devices and various small-scale circuits, and approaches for higher density integration and larger scale circuits are discussed.
机译:为了实现称为“智能量子”(IQ)芯片的微型“知识工具”,以供即将到来的无处不在的网络社会使用,本文介绍了超小型和超低功耗III-V的现状和未来展望量子逻辑的大规模集成电路,基于新颖的六边形二进制决策图(BDD)量子电路架构。在此,由纳米级肖特基包裹栅(WPG)控制在基于III-V半导体的六角形纳米线网络上形成的路径切换节点器件中的量子传输,以实现任意组合逻辑功能。通过基本节点设备和各种小规模电路的制造,表明了该方法的可行性,并讨论了用于更高密度集成和更大规模电路的方法。

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