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Enhancing Wavelength Tunability of Photonic Crystal Nanolasers by Waveguide-Like Strain Shapers

机译:通过波导样应变成形器增强光子晶体纳米玻璃的波长可调性

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摘要

In this report, we propose an idea of connecting 1D photonic crystal (PhC) nanocavity with novel waveguide-like strain shapers in a polydimethylsiloxane substrate. In theory, the induced film-edge strain by the strain shapers can significantly enhance the wavelength tunability of PhC nanocavity under different applied stress. By our nanofabrication process, we realize this idea in the form of a tunable nanolaser. In experiments, the nanolaser shows the enhanced wavelength tunability both under stretching and compressive stress. By investigating the effects of PhC periods and length of the strain shapers, we obtain an optimized lasing wavelength tunability of -13.9 nm under every percentage strain variation in experiments. When further taking the 2nd-order mode in the nanocavity into consideration, we observe a wide lasing wavelength tuning range over 160 nm, which takes only the applied strain Delta xi(tot) of +/- 0.05. In addition to the large wavelength response beneficial for tunable nanolasers and optical strain sensors, we also believe that this waveguide-like strain shapers can serve as the optical interconnections at the same time in the flexible photonic circuits.
机译:在本报告中,我们提出了在聚二甲基硅氧烷基材中与新型波导样菌株成形器连接1D光子晶体(PHC)纳米胶质。理论上,诱导的诱导膜边缘应变成形器的菌株可以在不同施加应力下显着提高PHC纳米凹凸的波长可调性。通过我们的纳米制作过程,我们以可调谐纳米淋度的形式实现了这种想法。在实验中,纳米锥层显示出在拉伸和压缩应力下的增强波长可调性。通过研究PHC时段和应变成形器的长度的影响,我们在实验中的每个百分比应变变化下获得-13.9nm的优化激光波长可调性。当进一步考虑纳米恒星中的2ND阶模式时,我们观察到超过160nm的宽波长调谐范围,只有+/- 0.05的施加的应变ΔXi(Tot)。除了有利于可调谐纳米液和光学应变传感器的大波长响应之外,我们还认为该波导样应变成形器可以在柔性光子电路中同时用作光学互连。

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