Controlling Single‐Photon Emission with Ultrathin Transdimensional Plasmonic Films

Controlling Single‐Photon Emission with Ultrathin Transdimensional Plasmonic Films
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用超薄跨维等离子体薄膜控制单光子发射

DOI:
10.1002/andp.202200331
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发表时间:
2022
期刊:
影响因子:
2.4
通讯作者:
Bondarev, Igor V.
Bondarev, Igor V.
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
Bondarev, Igor V.

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从理论上研究了超薄跨维等离子体激元膜附近的两能级量子偶极发射极的性质。所研究的模型系统模仿固态单光子源设备。利用真实的实验参数,计算了自发辐射和受激辐射强度随激发频率和薄膜厚度的变化曲线,并分析了二阶光子相关性,探讨了光子反聚束效应。结果表明,双跨维等离子体薄膜可以大大提高光子的反聚束与厚度减少,这使得人们可以控制光的量子特性,使他们更显着。了解这些特征对于固态单光子源器件工程和基于跨维等离子体薄膜的新型集成量子光子学材料平台的开发是有利的。
The properties of a two‐level quantum dipole emitter near an ultrathin transdimensional plasmonic film are studied theoretically. The model system studied mimics a solid‐state single‐photon source device. Using realistic experimental parameters, the spontaneous and stimulated emission intensity profiles are computed as functions of the excitation frequency and film thickness, followed by the analysis of the second‐order photon correlations to explore the photon antibunching effect. It is shown that ultrathin transdimensional plasmonic films can greatly improve photon antibunching with thickness reduction, which allows one to control the quantum properties of light and make them more pronounced. Knowledge of these features is advantageous for solid‐state single‐photon source device engineering and overall for the development of the new integrated quantum photonics material platform based on the transdimensional plasmonic films.
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