钻石纳米腔中的量子发射器之间的光子介导相互作用
R E Evans1, M K Bhaskar1, D D Sukachev1
1Department of Physics, Harvard University, Cambridge, MA 02138, USA.
概括
研究人员展示了钻石腔中的空色中心之间的受控光子介导相互作用. 这使得超辐射和亚辐射状态成为量子网络和量子计算的关键.
科学领域:
- 量子光学
- 固态量子信息
- 纳米光子学
背景情况:
- 在量子网络和可扩展的量子信息处理中, 光子介导的相互作用是基本的.
- 钻石中的空 (SiV) 颜色中心是有前途的固态量子位.
- 通过将量子发射器连接到光腔, 增强了光物质相互作用.
研究的目的:
- 为了展示和控制两对SiV颜色中心之间的光子介导相互作用.
- 通过这些交互来实现可扩展的量子信息处理和量子网络.
- 探索用于控制光学相互作用的自旋自由度.
主要方法:
- 将SiV颜色中心配对到一个共享的钻石纳米光子腔.
- 调整SiV中心的光学转换与腔模式的共振.
- 使用SiV中心的电子旋转来控制介导相互作用.
主要成果:
- 通过空腔介导两个SiV中心之间实现了连贯的相互作用.
- 由于共振合而观察到光谱分辨的超辐射和亚辐射状态.
- 通过使用SiV中心的自旋特性来控制这些相互作用.
结论:
- SiV中心之间的受控光子介导相互作用可以通过腔合实现.
- 这些相互作用对于开发自旋量子比特之间的空洞介导量子门至关重要.
- 这种控制是实现可扩展量子网络节点的关键步骤.
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