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A low lasing threshold and widely tunable spaser based on two dark surface plasmons

机译:基于两个暗表面等离子体激元的低激射阈值和可广泛调节的飞镖

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摘要

We theoretically demonstrate a low threshold and widely tunable spaser based on a plasmonic nanostructure consisting of two sets of disk-rings (TSDR). The TSDR nanostructure supports two dark surface plasmons (SPs), which are excited simultaneously by two bright SPs at Fano dips. The two dark SPs support lower effective mode volume, higher quality factor and higher Purcell factors. When the dark SPs serve as the pumping and lasing mode of a spaser, the spaser has a lower lasing threshold, a higher pump absorption efficiency and a lower threshold absorbed pump power than the spaser based on a bright SP. In addition, the lasing and pumping wavelengths of the spaser proposed in this article can each be tuned over a very wide wavelength range. Our results should be significant for the development of spasers.
机译:我们从理论上证明了基于由两组盘环(TSDR)组成的等离子体纳米结构的低阈值且可广泛调整的spaser。 TSDR纳米结构支持两个深色表面等离激元(SP),它们在Fano浸蚀处同时被两个明亮SP激发。两个深色SP支持较低的有效模式音量,较高的品质因数和较高的Purcell系数。当深色SP用作SPASER的泵浦和激射模式时,与基于亮SP的SPASER相比,SPASER具有较低的激射阈值,较高的泵吸收效率和较低的阈值吸收泵浦功率。此外,本文中提出的Spaser的激射和泵浦波长均可在非常宽的波长范围内进行调节。我们的结果对于散打器的开发应该具有重要意义。

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