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Apparatus and methods for spectroscopy and broadband light emission using two-dimensional plasmon fields

机译:使用二维等离子体激元场的光谱学和宽带光发射的装置和方法

摘要

Ultra-thin conductors are employed to generate plasmon fields near the surface of the conductors. Emitters, such as atoms, molecules, quantum dots, or quantum wells, in the plasmon fields can emit and absorb light via transitions that are otherwise forbidden in the absence of the plasmon fields. Applications using these forbidden transitions include spectroscopy, organic light sources, and broadband light generation. For example, in a spectroscopic platform, an emitter is disposed in the plasmon fields to excite electronic transitions that are otherwise unexcitable. In organic light sources, plasmon fields quench excited triplet states, allowing fast singlet decay with the emission of light. In broadband light generation, strong two-plasmon spontaneous emission of emitters near ultrathin conductors is employed to produce a broad spectrum of light.
机译:采用超薄导体在导体表面附近产生等离子体激元场。在等离激元场中的发射体,例如原子,分子,量子点或量子阱,可以通过在没有等离激元场的情况下被禁止的跃迁来发射和吸收光。使用这些禁止跃迁的应用包括光谱学,有机光源和宽带光产生。例如,在光谱平台中,将发射器布置在等离激元场中,以激发原本无法激发的电子跃迁。在有机光源中,等离激元场淬灭激发的三重态,从而随着光的发射而快速发生单重态衰减。在宽带光的产生中,超薄导体附近的发射器会发出强烈的两等离子体激元自发辐射,以产生宽光谱的光。

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