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Solid state quantum computers: A nanoscopic solution to the Moore's Law problem

机译:固态量子计算机:玛因律法问题的纳米镜溶液

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The computer industry has followed Moore's Law closely and faithfully over the past few decades. However, transistors cannot continue to shrink at their current rate forever, and new methods of computation must be explored. Quantum computation is one such method that has received much attention over the past few years and will heavily rely on technological advances in the smart electronics and nanotechnology arena. In this review, we will present some of the problems facing classical computers and why quantum computers may be a viable alternative. We will briefly describe some of the "killer" quantum applications, such as Deutsch's, Shor's and Grover's algorithms that demonstrate the computational powers of quantum computation. Kane's solid state quantum computer in silicon promises to demonstrate some of these applications. However there remain many significant technological difficulties which will need to be overcome if we are to see a useful quantum computer. The main technological challenges, for Kane's solid-state computer, of interest to the smart materials and structures community, will be highlighted.
机译:在过去的几十年里,计算机行业紧随其后致密地遵循摩尔定律。然而,晶体管不能继续缩小它们的当前速率,并且必须探索新的计算方法。量子计算是过去几年受到很多关注的一种方法,并将大量依赖智能电子和纳米技术领域的技术进步。在本次审查中,我们将介绍古典计算机面临的一些问题以及量子计算机可能是可行的替代方案。我们将简要描述一些“杀手”量子应用,例如Deutsch,Shor和Grover的算法,其展示量子计算的计算能力。 Kane在硅中的固态量子计算机承诺展示其中一些应用。然而,如果我们看到有用的量子计算机,需要克服许多重要的技术困难。将突出显示智能材料和结构社区的凯恩固态计算机的主要技术挑战,将被突出。

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