近场GHz旋转和传感与一个光学上升的纳米贝
Peng Ju1, Yuanbin Jin1, Kunhong Shen1
1Department of Physics and Astronomy, Purdue University, West Lafayette, Indiana 47907, United States.
Nano letters
|November 1, 2023
概括
我们用光学方式悬浮一个纳米,以达到千兆赫的旋转速度,为基础物理研究创建一个超灵敏的扭矩探测器.
科学领域:
- 量子物理学的量子物理学
- 纳米技术纳米技术
- 表面科学是一门科学.
背景情况:
- 悬浮的非球形纳米粒子为量子旋转研究提供了独特的平台.
- 它们作为超灵敏的扭矩探测器,用于探测基本的粒子-表面相互作用.
研究的目的:
- 在真空中以光学方式悬浮一个纳米.
- 驱动纳米旋以GHz频率在表面附近旋转.
- 为了描述它的扭矩灵敏度,并探索近场光学现象.
主要方法:
- 在真空中对纳米进行光学悬浮.
- 在蓝宝石表面附近以 GHz 频率旋转纳米.
- 探测近场激光强度分布使用纳米附近的纳米.
主要成果:
- 实现了GHz旋转频率为悬浮的纳米.
- 在室温下显示的扭矩灵敏度为 (5.0 ± 1.1) × 10-26 N m Hz-1/2.
- 成功探测了超出光学衍射极限的近场激光强度.
结论:
- 悬浮纳米系统是基础物理学的强大工具.
- 它显示了测量卡西米尔扭矩和改善非牛顿引力检测极限的潜力.
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