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The CRL gateway

机译:CRL网关

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Smaller and smaller semiconductor integrated circuits are being designed. Traditional semiconductor fabrication processes are still extremely effective. However, these methods' effectiveness will come to a halt as components shrink to atomic size. Quantum physics then start to govern device behavior. Thus a radical shift, hence upheaval (change is never easy), in computing is a foregone conclusion. But the resulting quantum computers will be tremendously powerful. As our circuits become smaller, the heat they generate becomes harder to control. Much of this heat is a result of the logic function itself, rather than simple resistive dissipation. Therefore, new forms of logic must be considered. Conservative reversible logic (CRL) can reduce the problem of energy dissipated due to logic functions and can be utilized to build quantum computers. Before that can happen, research must be done on how to utilize these gates. Also, a usable synthesis process must be designed. Unparalleled computing power, power savings, and resources are being uncovered. The paper discusses CRL-based gates. They are only models, but models must exist to meet the technology developments required to build quantum computers.
机译:正在设计越来越小的半导体集成电路。传统的半导体制造工艺仍然非常有效。但是,随着组分缩小到原子尺寸,这些方法的有效性将停止。然后,量子物理学开始控制设备的行为。因此,计算中的根本转变,因此剧变(绝不容易改变)已成定局。但是最终的量子计算机将具有强大的功能。随着我们的电路变得越来越小,它们产生的热量变得越来越难以控制。大部分热量是逻辑功能本身的结果,而不是简单的电阻耗散。因此,必须考虑新的逻辑形式。保守可逆逻辑(CRL)可以减少由于逻辑功能而导致的能量耗散问题,并且可以用来构建量子计算机。在此之前,必须对如何利用这些门进行研究。另外,必须设计一种可用的合成方法。无与伦比的计算能力,节能和资源正在被发现。本文讨论了基于CRL的门。它们只是模型,但是必须存在模型才能满足构建量子计算机所需的技术发展。

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