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面码实现分块码态蒸馏。

Surface code implementation of block code state distillation.

机构信息

Centre for Quantum Computation and Communication Technology, School of Physics, The University of Melbourne, Victoria 3010, Australia.

出版信息

Sci Rep. 2013;3:1939. doi: 10.1038/srep01939.

Abstract

State distillation is the process of taking a number of imperfect copies of a particular quantum state and producing fewer better copies. Until recently, the lowest overhead method of distilling states produced a single improved [formula: see text] state given 15 input copies. New block code state distillation methods can produce k improved [formula: see text] states given 3k + 8 input copies, potentially significantly reducing the overhead associated with state distillation. We construct an explicit surface code implementation of block code state distillation and quantitatively compare the overhead of this approach to the old. We find that, using the best available techniques, for parameters of practical interest, block code state distillation does not always lead to lower overhead, and, when it does, the overhead reduction is typically less than a factor of three.

摘要

态蒸馏是指从多个不完美的特定量子态副本中提取更少但更好的副本的过程。直到最近,提取态的最低开销方法是在给定 15 个输入副本的情况下生成单个改进的[公式:见正文]态。新的块码态蒸馏方法可以在给定 3k+8 个输入副本的情况下生成 k 个改进的[公式:见正文]态,这可能会显著降低与态蒸馏相关的开销。我们构建了块码态蒸馏的显式表面码实现,并对该方法与旧方法的开销进行了定量比较。我们发现,在实际感兴趣的参数下,使用最好的现有技术,块码态蒸馏并不总是会导致更低的开销,而且,当它确实会导致开销降低时,通常也不会超过三倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf57/3672884/3bc14bafbe7f/srep01939-f4.jpg

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