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Athermal silicon subwavelength grating waveguides

机译:非热硅亚波长光栅波导

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In this paper, athermal subwavelength grating (SWG) waveguides are investigated. Both numerical simulations and experimental results show that a temperature independent behaviour can be achieved by combining two materials with opposite thermo-optic coefficients within the waveguide. SU-8 polymer with a negative thermo-optic coefficient (dn/dT = -1.1×10~(-4) K~(-1)) is used in our silicon SWG waveguides to compensate for silicon's positive thermo-optic coefficient of 1.9×10~(-4) K~(-1) The grating duty ratio required to achieve an athermal behavior is reported to vary as a function of the operating wavelength and the waveguide dimensions. For example, for athermal waveguides of 260 nm in height, duty ratios of 61.3% and 83.3% were calculated for TE and TM polarized light respectively for a 450 nm wide waveguide, compared to ratios of 79% and 90% for a 350 nm wide waveguide. It is also reported that with increasing width, and increasing height, a smaller grating duty ratio is necessary to achieve an athermal behaviour. A smaller fraction of silicon would hence be needed to compensate for the polymer's negative thermo-optic effect in the waveguide core. Subwavelength sidewall grating (SWSG) waveguides are also proposed here as alternatives to high duty ratio SWG waveguides that are required for guiding TM polarized light. Assuming a duty ratio of 50%, the width of the narrow segments for temperature-independent behavior is found by numerical simulations to be 125 nm and 143 nm for TE and TM polarized light, respectively.
机译:本文研究了非热亚波长光栅(SWG)波导。数值模拟和实验结果均表明,通过在波导内组合具有相反热光系数的两种材料,可以实现与温度无关的行为。具有负热光系数(dn / dT = -1.1×10〜(-4)K〜(-1)的SU-8聚合物)用于我们的硅SWG波导中以补偿硅的正热光系数1.9 ×10〜(-4)K〜(-1)据报道,实现无热行为所需的光栅占空比随工作波长和波导尺寸而变化。例如,对于高度为260 nm的无热波导,对于450 nm宽的波导,TE和TM偏振光的占空比分别计算为61.3%和83.3%,而对于350 nm宽的波导,占空比分别为79%和90%波导。还据报道,随着宽度增加和高度增加,需要较小的光栅占空比以实现无热性能。因此,将需要更少量的硅来补偿聚合物在波导芯中的负热光效应。在此还提出了亚波长侧壁光栅(SWSG)波导,作为对TM偏振光进行引导所需的高占空比SWG波导的替代方案。假设占空比为50%,则通过数值模拟发现TE和TM偏振光的窄段宽度与温度无关,分别为125 nm和143 nm。

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