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Development of a Fine Grating on ZnS for a Wideband Spectral Disperser in Characterizing Exoplanets using Space-borne Telescopes

机译:使用空间望远镜表征外肌射频分散器的ZNS对ZnS的微光栅

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We present the fabrication and optical testing of a fine grating on a ZnS substrate to be used as a wideband infrared spectral disperser and for which the primary application is measurement of the composition of the atmospheres of transiting exoplanets using space-borne infrared astronomical telescopes. A grating with a blaze angle of 2.1 Deg. and pitch of 166.667 urn was constructed on a roughly flat 10 mm x 10 mm substrate with a maximum thickness of 1 mm. To obtain high accuracy, the sample was fabricated on a ZnS monocrystal using a high performance processing machine at Canon Inc. The surface roughness measured with a microscope interferometer was 2.6 nm rms. The shape of the fabricated grating edges was examined with a scanning electron microscope. The diffraction efficiency was evaluated by optical experiments at X = 633 nm, 980 nm, and 1550 nm, and compared with the efficiencies calculated using a Fourier Modal Method. The results showed that the differences between the diffraction efficiencies obtained from experiment and by calculation were between just 0.9 % and 2.4 %. We concluded that the quality of the fabricated ZnS grating was sufficiently high to provide excellent diffraction efficiency for use in the infrared wavelength region. We also present the design of a spectral disperser in CdTe for future more advanced performance.
机译:我们介绍了ZnS衬底上的细光栅的制造和光学测试以用作宽带红外光谱分散器,并且主要应用是使用空间传播的红外天文望远镜来测量过量的红外天文学望远镜的过度的外肌的大气的组成。具有2.1°的膨胀角的光栅。 166.667 URN的音高由最大厚度为1mm的大致平坦的10mm×10mm基板上构建。为了获得高精度,使用Canon Inc的高性能加工机在ZnS单晶中制造样品。用显微镜干涉仪测量的表面粗糙度为2.6nm rms。用扫描电子显微镜检查制造的光栅边缘的形状。通过X = 633nm,980nm和1550nm的光学实验评估衍射效率,并与使用傅里叶模态方法计算的效率进行比较。结果表明,从实验和计算中获得的衍射效率之间的差异仅为0.9%和2.4%。我们得出结论,制造的ZnS光栅的质量足够高,以提供用于红外波长区域的优异衍射效率。我们还介绍了CDTE中的光谱分散器的设计,以便将来更先进的性能。

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