通过光腔介导的中性原子进行错误检测的量子操作
Brandon Grinkemeyer1, Elmer Guardado-Sanchez1, Ivana Dimitrova1
1Department of Physics, Harvard University, Cambridge, MA, USA.
概括
我们开发了一个中性原子量子计算平台, 该系统实现了量子位状态读取的高保真性,并展示了用于量子网络生成纠状态的两种方法.
科学领域:
- 量子计算
- 量子网络
- 原子物理
背景情况:
- 中性原子量子处理器提供了量子计算的可扩展性.
- 整合光学空洞可以增强量子比特读数和量子网络的纠生成.
研究的目的:
- 在光学子中将单个原子合到Fabry-Perot纤维腔中.
- 为了证明快速,高准确度的量子位读取和空洞介导的纠生成.
主要方法:
- 将被困在光学子中的单个中性原子合到纤维法布里-佩罗腔中.
- 使用强大的原子腔合用于量子位操纵和读取.
- 实施空洞雕刻和空洞介导的门,以产生纠.
主要成果:
- 实现了高准确度的量子位状态读取.
- 经过证明的空洞雕刻以产生贝尔状态,具有91%的忠实度和32%的成功率.
- 通过错误检测获得了52.5~18%的决定性纠准确度,提高到76.2%.
结论:
- 开发的平台可以为中性原子量子系统提供快速,高可靠的操作.
- 这种方法促进了模块化量子计算和网络应用.
- 集成的错误检测提高了空腔介导纠生成的性能.
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