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Optimization of a surface relief grating for band filter application by numerical simulations

机译:通过数值模拟优化带通滤波器应用的表面起伏光栅

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We worked out a band pass filter based on a surface relief grating structure. The cross-section of the grating ridges has a T-shape, realizing high-low-high refractive index contrast like in an interference filter. This monolithic filter exhibits outstanding opto-mechanical qualities, thus it can be efficiently used e.g. in low temperature environment or at high laser intensities. The optimized dimensions of the structure is determined by numerical simulations. The RCWA (see Section 2.2) and MoL (see Section 2.1) methods were used to calculate the transmittance of the filter. It is shown that the filter has very good transmittance at the center wavelength and suppress other wavelengths in the NIR range (1200 – 1900 nm). The stability of the simulations is checked by monitoring energy conservation. The correctness of the results was assured by applying two independent methods (RCWA and MoL) and comparing the results.
机译:我们基于表面起伏光栅结构设计了一个带通滤波器。光栅脊的横截面为T形,与干涉滤光片一样,实现了高-低-高折射率的对比。这种单片滤光片表现出杰出的光机械性能,因此可以有效地使用,例如。在低温环境或高激光强度下。通过数值模拟确定结构的最佳尺寸。 RCWA(请参阅第2.2节)和MoL(请参阅第2.1节)方法用于计算滤波器的透射率。结果表明,该滤光片在中心波长处具有很好的透射率,并抑制了近红外范围(1200 – 1900 nm)中的其他波长。通过监视节能来检查仿真的稳定性。通过应用两种独立的方法(RCWA和MoL)并比较结果,可以确保结果的正确性。

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