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掺铒压光机械微腔中的荧光辅助声子计数

Fluorescence enabled phonon counting in an erbium-doped piezo-optomechanical microcavity.

作者信息

Yang Likai, Xie Jiacheng, Tang Hong X

机构信息

Department of Electrical Engineering, Yale University, New Haven, CT 06511, USA.

出版信息

Nanophotonics. 2025 Jan 8;14(11):2087-2094. doi: 10.1515/nanoph-2024-0400. eCollection 2025 Jun.

Abstract

Converting phonons to photons with optomechanical interaction provides a pathway to realize single phonon counting, which is instrumental in the quantum applications of mechanical systems such as entanglement generation, thermometry, and study of macroscopic quantum phenomenon. In this process, the key requirement is high-extinction, narrow-bandwidth, and stable filtering of the parametric optical pump. Here, we propose to lift this necessity by counting fluorescence emission from a rare earth embedded optomechanical cavity. By doing so, we show that an equivalent filtering effect can be achieved due to spectral hole burning and cavity Purcell effect. To demonstrate this, we designed, fabricated, and characterized an integrated piezo-optomechanical Fabry-Perot cavity on the erbium-doped thin-film lithium niobate platform. By collecting fluorescence from the optomechanical sideband, we show that 93 dB suppression of the pump can be achieved with 10 dB loss of signal, resulting in an increase of 83 dB in sideband-pump ratio. Our results facilitate a route to realize filterless single phonon counting and also create new opportunities to study the interaction between solid state emitters and mechanical systems.

摘要

通过光机械相互作用将声子转换为光子为实现单声子计数提供了一条途径,这在诸如纠缠生成、温度测量以及宏观量子现象研究等机械系统的量子应用中至关重要。在此过程中,关键要求是对参量光泵浦进行高消光、窄带宽且稳定的滤波。在此,我们提议通过对嵌入稀土的光机械腔的荧光发射进行计数来消除这一需求。通过这样做,我们表明由于光谱烧孔和腔珀塞尔效应,可以实现等效的滤波效果。为了证明这一点,我们在掺铒薄膜铌酸锂平台上设计、制造并表征了一个集成压电光机械法布里 - 珀罗腔。通过收集光机械边带的荧光,我们表明在信号损失10 dB的情况下,可以实现对泵浦的93 dB抑制,从而使边带 - 泵浦比提高83 dB。我们的结果为实现无滤波单声子计数提供了一条途径,也为研究固态发射体与机械系统之间的相互作用创造了新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b93f/12133244/277a2414aa87/j_nanoph-2024-0400_fig_001.jpg

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