论文标题

通过使用搅拌与穿着的状态驾驶的量子传感

Quantum Sensing by Using STIRAP with Dressed States Driving

论文作者

Zhang, Hao, Qin, Guo-Qing, Song, Xue-Ke, Long, Gui-Lu

论文摘要

探索量子技术以精确衡量物理量是实用科学研究的重要任务。在这里,我们提出了一种基于刺激的拉曼绝热通道中装饰状态(DSD)的新型量子传感模型。该模型是通用的,用于传感不同的物理量,例如磁场,质量,旋转等。对于不同的传感器,使用的系统可以从宏观尺度(例如光学机械系统,至微观纳米级,例如钻石中的氮散布颜色中心。通过研究DSD通道的颜色失沟的动力学,结果表明,通过调谐系统可以分别在非脱生和退化的颜色失调状态下,可以增强传感器的敏感性。为了显示应用程序示例,我们采用我们的方法来构建具有实用参数的固体自旋磁力计。

Exploring quantum technology to precisely measure physical quantities is a meaningful task for practical scientific researches. Here, we propose a novel quantum sensing model based on dressed states driving (DSD) in stimulated Raman adiabatic passage. The model is universal for sensing different physical quantities, such as magnetic field, mass, rotation and etc. For different sensors, the used systems can range from macroscopic scale, e.g. optomechanical systems, to microscopic nanoscale, e.g. nitrogen-vacancy color centres in diamond. By investigating the dynamics of color detuning of DSD passage, the results show the sensitivity of sensors can be enhanced by tuning system with more adiabatic and accelerated processes in non-degenerate and degenerate color detuning regime, respectively. To show application examples, we apply our approach to build optomechanical mass sensor and solid spin magnetometer with practical parameters.

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