在2D设备上没有蒸的容错量子计算
Thomas R Scruby1, Kae Nemoto1, Zhenyu Cai2,3
1Okinawa Institute of Science and Technology, Okinawa, Japan.
概括
循环管道架构可以实现对2D表面代码的故障耐受性非克利福德门. 由于这种架构中与解码器相关的高成本,目前的方法有利于魔法状态蒸.
科学领域:
- 量子计算是一种量子计算.
- 容错量子计算的量子计算方法
- 表面代码 表面代码
背景情况:
- 循环管道架构为物理量子比特提供了局限的非本地连接.
- 实现非克利福德门对于通用量子计算至关重要.
研究的目的:
- 为了评估循环管道架构的效率,在2D表面代码中实现耐故障的非Clifford门.
- 为了比较这种方法的资源成本与魔法状态蒸.
主要方法:
- 使用循环管道架构与短距离量子比特穿.
- 在2D表面代码中实现耐故障的非克利福德门.
- 分析所需的穿时间表的复杂性.
- 将资源成本与魔法状态蒸进行比较.
主要成果:
- 循环管道架构可以有效地实现耐故障的非克利福德门.
- 所需的穿时间表仅比标准的2D表面代码复杂得多一点.
- 魔法状态蒸目前更节省资源.
- 非克利福德门的高成本与即时解码器的性能有关.
结论:
- 在循环管道架构中非克利福德门实现的效率受到解码器性能的阻碍.
- 优化即时解码器为提高资源效率提供了重大机会.
- 对解码器优化进行进一步的研究是有必要的,以推进容错量子计算.
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