红外探测器用光子晶体纳米线

Mohd Nuriman Nawi, Nurulhani Diana Rashid, D. Berhanuddin, A. Zain, B. Majlis, M. Mahdi
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引用次数: 1

摘要

我们报道了光子晶体(PhC)纳米线在光电探测器集成中的潜在应用。PhC的折射率可以精确地引导特定的共振波长。本文提出了具有12个周期孔的一维PhC的数值方法,以观察其获得的阻带范围、透射率和共振波长的品质因子。在440 ~ 450 nm的空腔范围内等分孔,观察到的阻带在1.5 ~ 2.1 μm之间。通过改变腔长,所观察到的共振波长值和质量因子也发生了变化。引入442 nm腔体,透射率最高,但品质因子(Q-factor)最低,分别为0.87和284。这些值表明波导中设计的光的良好限制,从而使波长选择性的光电探测器应用于高灵敏度的波长选择应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photonic crystal (PhC) nanowires for infrared photodetectors
We report the Photonic Crystal (PhC) nanowires performance for potential phototodetectors integration application. The refractive index of PhC can be tailored to guide specific resonance wavelength precisely. This paper presents the numerical approach of 1D PhC with 12 periodic holes to observe the range of stop band acquired, transmission and the quality factor of the resonance wavelengths. By splitting the holes equally with a range of cavities from 440 to 450 nm, the stop band observed are between 1.5 to 2.1 μm. By varying the cavity length, the value of resonance wavelengths and quality factors observed have also changed. The introduction of 442 nm cavity shows the highest transmission but the lowest Quality factor (Q-factor) where both are observed at 0.87 and 284 respectively. The values indicate a good confinement of light in the waveguide designed thus enabling wavelength selectivity for photodetectors application in highly sensitive wavelength selection application.
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