1.4 Quantum computing - the next challenge in circuit and system design

L. Vandersypen, A. Leeuwenhoek
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引用次数: 32

Abstract

The challenge of quantum computing is that quantum bits are extremely fragile and their state is easily perturbed by environmental fluctuations. However, recent theoretical and experimental advances have made it clear that the resulting errors can in principle be corrected. What it takes is a system containing thousands or millions of quantum bits operating at ultra-low temperatures, that must be interfaced using complex classical mixed-signal and microwave circuits for read-out and control. By comparison, today’s practical demonstrations involve no more than a dozen quantum bits controlled by bulky instrumentation that is not scalable.
1.4量子计算——电路和系统设计的下一个挑战
量子计算的挑战在于量子比特极其脆弱,它们的状态很容易受到环境波动的干扰。然而,最近的理论和实验进展已经清楚地表明,由此产生的误差原则上是可以纠正的。它所需要的是一个包含数千或数百万个在超低温下工作的量子比特的系统,必须使用复杂的经典混合信号和微波电路进行接口,以进行读出和控制。相比之下,今天的实际演示涉及不超过12个量子比特,这些量子比特由笨重的仪器控制,不可扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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