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Design study of random spectrometers for applications at optical frequencies

机译:无随机光谱仪在光学频率下的应用设计研究

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摘要

Compact spectrometers based on disordered planar waveguides exhibit a rather high resolution with a relatively small footprint compared to conventional spectrometers. This is achieved by multiple scattering of light, which- if properly engineered-significantly enhances the effective optical path length. Here a design study of random spectrometers for TE- and TM-polarized light is presented that combines the results of Mie theory, multiple-scattering theory, and full electromagnetic simulations. It is shown that the performance of such random spectrometers depends on single-scattering quantities, notably on the overall scattering efficiency and the asymmetry parameter. Further, the study shows that a well-developed diffusive regime is not required in practice and that a standard integrated-optical layout is sufficient to obtain efficient devices even for rather weakly scattering systems consisting of low index inclusions in high-index matrices, such as pores in planar silicon-nitride-based waveguides. This allows for both significant reductions in footprint with acceptable losses in resolution and for device operation in the visible and near-infrared frequency range. (C) 2018 Optical Society of America
机译:基于无序平面波导的紧凑型光谱仪表现出相当高的分辨率,与传统光谱仪相比具有相对较小的占地面积。这是通过多次光散射来实现的,如果适当地设计 - 显着增强了有效的光路长度。这里提出了对Te-and TM偏振光的随机光谱仪的设计研究,其结合了MIE理论,多散射理论和全电磁模拟的结果。结果表明,这种随机光谱仪的性能取决于单散射量,特别是在整体散射效率和不对称参数上。此外,该研究表明,实践中不需要发育良好的扩散制度,并且标准集成光学布局也足以获得高效的设备,即使对于由高索引矩阵中的低索引夹杂物组成的散射系统,例如平面氮化硅基波导的孔隙。这允许在可接受的丢失和可见和近红外频率范围内具有可接受的损耗的占地面积显着减少。 (c)2018年光学学会

著录项

  • 来源
    《Optics Letters》 |2018年第13期|共4页
  • 作者单位

    Max Born Inst Max Born Str 2A D-12489 Berlin Germany;

    Humboldt Univ Inst Phys AG Theoret Opt &

    Photon Newtonstr 15 D-12489 Berlin Germany;

    Univ Munster Inst Phys Wilhelm Klemm Str 10 D-48149 Munster Germany;

    Univ Munster Inst Phys Wilhelm Klemm Str 10 D-48149 Munster Germany;

    Max Born Inst Max Born Str 2A D-12489 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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