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首页> 外文期刊>Physical Review X >The Nature and Correction of Diabatic Errors in Anyon Braiding
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The Nature and Correction of Diabatic Errors in Anyon Braiding

机译:Anyon编织中绝热误差的性质和校正

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Topological phases of matter are a potential platform for the storage and processing of quantum information with intrinsic error rates that decrease exponentially with inverse temperature and with the length scales of the system, such as the distance between quasiparticles. However, it is less well understood how error rates depend on the speed with which non-Abelian quasiparticles are braided. In general, diabatic corrections to the holonomy or Berry’s matrix vanish at least inversely with the length of time for the braid, with faster decay occurring as the time dependence is made smoother. We show that such corrections will not affect quantum information encoded in topological degrees of freedom, unless they involve the creation of topologically nontrivial quasiparticles. Moreover, we show how measurements that detect unintentionally created quasiparticles can be used to control this source of error.
机译:物质的拓扑阶段是用于存储和处理量子信息的潜在平台,其固有错误率随着逆温度和系统长度尺度(如准粒子之间的距离)呈指数下降。但是,对于错误率如何取决于非阿贝尔准粒子的编织速度却知之甚少。通常,对整体性或Berry矩阵的非绝热校正至少与编织时间长度成反比,并且随着对时间的依赖性变得更平滑,衰减更快。我们表明,这种校正将不会影响以拓扑自由度编码的量子信息,除非它们涉及拓扑非平凡的准粒子的创建。此外,我们展示了如何检测无意中产生的准粒子的测量方法来控制这种误差源。

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