Numerical Implementation of Just-In-Time Decoding in Novel Lattice Slices Through the Three-Dimensional Surface Code

Numerical Implementation of Just-In-Time Decoding in Novel Lattice Slices Through the Three-Dimensional Surface Code
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通过三维表面码对新型晶格切片进行即时解码的数值实现

DOI:
10.22331/q-2022-05-24-721
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发表时间:
2020
期刊:
影响因子:
6.4
通讯作者:
M. Vasmer
M. Vasmer
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
T. Scruby;D. Browne;P. Webster;M. Vasmer

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我们基于B. Brown(Sci。Adv。6,EAAY4929(2020))的最新工作,以开发和模拟三种3D表面代码中的即时解码方案的明确配方,可用于实现横向(非clifford)$ \ overline {ccz} $在代码距离的三个2D表面代码之间。我们通过3D代码介绍了一组详细的有界高度晶格切片集,该密码保留了整个3D代码的代码距离和测量误差 - 检测整个3D代码的属性,并接纳了一个尺寸跳跃过程,该过程从/折叠到支持的2D表面代码。每个切片的边界。在该过程的每个时间步中,切片在一组普通的重叠QCZ $上都应应用$ ccz $的普通量子。我们使用这些切片来模拟对随机$ x $的简单JIT解码器的性能和测量错误,并在所有三个代码中找到阈值$ p_c \ sim 0.1 \%$的证据。我们希望通过优化解码器来改善此阈值。
We build on recent work by B. Brown (Sci. Adv. 6, eaay4929 (2020)) to develop and simulate an explicit recipe for a just-in-time decoding scheme in three 3D surface codes, which can be used to implement a transversal (non-Clifford) $\overline{CCZ}$ between three 2D surface codes in time linear in the code distance. We present a fully detailed set of bounded-height lattice slices through the 3D codes which retain the code distance and measurement-error detecting properties of the full 3D code and admit a dimension-jumping process which expands from/collapses to 2D surface codes supported on the boundaries of each slice. At each timestep of the procedure the slices agree on a common set of overlapping qubits on which $CCZ$ should be applied. We use these slices to simulate the performance of a simple JIT decoder against stochastic $X$ and measurement errors and find evidence for a threshold $p_c \sim 0.1\%$ in all three codes. We expect that this threshold could be improved by optimisation of the decoder.
DOI: 10.1038/ncomms12302
发表时间: 2016-07-29
影响因子: 16.6
作者:
Brown BJ;Nickerson NH;Browne DE
通讯作者: Browne DE