测量无限因果顺序和萨格纳克干扰仪的测量
S M Barnett1, S Croke1, S Franke-Arnold1
1School of Physics and Astronomy, University of Glasgow, Glasgow G12 8QQ, UK.
概括
不确定的因果顺序测量,在萨格纳克干扰仪中实现,可以测量潘查拉特南-贝里阶段. 这种量子光学方法扩展到任意的光的量子状态.
科学领域:
- 量子光学就是量子光学.
- 量子信息科学是一种量子信息科学.
- 干涉测量是干涉测量的方法.
背景情况:
- 不确定的因果顺序比固定顺序的交易提供了优势.
- 萨格纳克干扰仪在光学系统中自然地实现了这些无限的因果顺序.
研究的目的:
- 为了证明萨格纳克干扰仪可以测量潘查拉特南-贝里相.
- 将分析扩展到对任意光的量子态进行完全量子化的处理.
主要方法:
- 使用萨格纳克干扰仪来实现无限的因果顺序.
- 将单元变换应用于光的极化.
- 从经典/单光子扩展到完全量子化的处理.
主要成果:
- 萨格纳克干扰仪设置测量了波因卡雷球上的单位转换所包围的固体角.
- 这个测量对应于潘查拉特纳姆-贝里阶段.
- 量子化处理允许对任意光的量子状态进行分析.
结论:
- 萨格纳克干扰仪是用于测量量子光学中潘查拉特纳姆-贝里相的有效工具.
- 这项研究为在光学实验中使用不确定的因果顺序分析量子态提供了基础.
关键词:
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