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分裂声子:为线性机械量子计算构建平台。

Splitting phonons: Building a platform for linear mechanical quantum computing.

机构信息

Pritzker School of Molecular Engineering, University of Chicago, Chicago, IL 60637, USA.

Center for Molecular Engineering and Material Science Division, Argonne National Laboratory, Lemont, IL 60439, USA.

出版信息

Science. 2023 Jun 9;380(6649):1030-1033. doi: 10.1126/science.adg8715. Epub 2023 Jun 8.

Abstract

Linear optical quantum computing provides a desirable approach to quantum computing, with only a short list of required computational elements. The similarity between photons and phonons points to the interesting potential for linear mechanical quantum computing using phonons in place of photons. Although single-phonon sources and detectors have been demonstrated, a phononic beam splitter element remains an outstanding requirement. Here we demonstrate such an element, using two superconducting qubits to fully characterize a beam splitter with single phonons. We further use the beam splitter to demonstrate two-phonon interference, a requirement for two-qubit gates in linear computing. This advances a new solid-state system for implementing linear quantum computing, further providing straightforward conversion between itinerant phonons and superconducting qubits.

摘要

线性光学量子计算为量子计算提供了一种理想的方法,只需要少量的计算元件。光子和声子之间的相似性表明,使用声子代替光子进行线性机械量子计算具有有趣的潜力。尽管已经证明了单声子源和探测器的存在,但声子分束元件仍然是一个突出的要求。在这里,我们使用两个超导量子比特来演示这样的元件,并用单声子对分束器进行了全面的特性描述。我们进一步利用分束器来演示双声子干涉,这是线性计算中两量子比特门的要求。这推进了一个新的实现线性量子计算的固态系统,进一步提供了在迁移声子和超导量子比特之间的直接转换。

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