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首页> 外文期刊>Physica, B. Condensed Matter >Coupled resonator induced transparency in surface plasmon polariton gap waveguide with two side-coupled cavities
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Coupled resonator induced transparency in surface plasmon polariton gap waveguide with two side-coupled cavities

机译:耦合谐振器在具有两个侧耦合腔的表面等离子体激元间隙波导中产生的透明性

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摘要

We investigate theoretically the generation process of coupled resonator-induced transparency (CRIT) in surface plasmon polariton gap waveguide system containing two side-coupled cavities, which locate at a symmetric position. The CRIT is original from the destructive interference of the two detuned cavities. In contrast with the existing electromagnetically induced transparency (EIT) schemes, the occurrence of the CRIT is caused by the two radiative cavities in waveguide, instead of interference between a dark cavity and radiative cavity. This behavior mimics the quantum interference between two direct excitation pathways in a three-level V-type atom. The transmission lineshape can be tuned between an EIT-like resonant peak and a Lorentzian-like resonant dip by tailoring the detuning of the two cavities. Moreover, we also find that the transparency peak moves to high frequency with a line shift and its Q factor decreases with the increase of coupling distance between the cavities and waveguide.
机译:我们在理论上研究了包含两个侧耦合腔的表面等离振子极化间隙波导系统中耦合谐振器感应的透明性(CRIT)的产生过程,该两个侧耦合腔位于对称位置。 CRIT是源自两个失谐腔的破坏性干涉而产生的。与现有的电磁感应透明(EIT)方案相反,CRIT的发生是由波导中的两个辐射腔引起的,而不是由暗腔和辐射腔之间的干扰引起的。此行为模仿了三能级V型原子中两个直接激发路径之间的量子干扰。通过调整两个腔的失谐,可以在EIT类共振峰和Lorentzian类共振谷之间调整传输线的形状。此外,我们还发现,透明峰随着线位移而移至高频,并且其Q因子随着腔与波导之间的耦合距离的增加而减小。

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