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Could one make a diamond-based quantum computer?

机译:能否制造出基于钻石的量子计算机?

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We assess routes to a diamond-based quantum computer, where we specifically look towards scalable devices, with at least 10 linked quantum gates. Such a computer should satisfy the deVincenzo rules and might be used at convenient temperatures. The specific examples that we examine are based on the optical control of electron spins. For some such devices, nuclear spins give additional advantages. Since there have already been demonstrations of basic initialization and readout, our emphasis is on routes to two-qubit quantum gate operations and the linking of perhaps 10-20 such gates. We analyse the dopant properties necessary, especially centres containing N and P, and give results using simple scoping calculations for the key interactions determining gate performance. Our conclusions are cautiously optimistic: it may be possible to develop a useful quantum information processor that works above cryogenic temperatures.
机译:我们评估到基于钻石的量子计算机的路由,在该计算机中,我们特别关注具有至少10个链接的量子门的可扩展设备。这样的计算机应该满足deVincenzo规则,并且可以在方便的温度下使用。我们研究的特定示例基于电子自旋的光学控制。对于某些此类设备,核自旋具有其他优势。由于已经有基本初始化和读出的演示,因此我们的重点是到两个量子比特量子门操作的路线以及可能的10-20个此类门的链接。我们分析必要的掺杂剂特性,尤其是包含N和P的中心,并使用简单的作用域计算得出决定栅极性能的关键相互作用,从而得出结果。我们的结论是谨慎乐观的:可能开发出在低温下工作的有用的量子信息处理器。

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