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Optimal Fabrication of Volume Phase Holographic Grism with High Efficiency and High dispersion, and its applicationsfor astronomical observation

机译:高效高分散体相全息光栅的优化制备及其在天文观测中的应用

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We had developed three types of large VPH grisms (110×106 mm~2) for FOCAS of the 8.2 m Subaru Telescope with high efficiency, high dispersion and small wavefront error in visible region. However, it has been highly difficult to fabricate VPH gratings for longer wavelength due to thickness of the grating. In order to overcome this problem, by optimizing exposure condition and introducing active phase control technique, we had successfully developed VPH grating for optical communication wavelength (1550 nm) with diffraction efficiency over 90% (TE mode) and a high refractive index modulation of 0.047. We extend these techniques to the device for astronomical observation, aiming at the application of K band VPH gratings for MOIRCS of the Subaru Telescope. The resultant grating has attained high diffraction efficiency of 91.5%, spectral bandwidth (FWHM) 320 nm, and small wavefront error 0.03 waves in r.m.s. at 2200 nm. This VPH grism is a promising dispersion device for astronomical observation in near-infrared region.
机译:我们为8.2 m斯巴鲁天文望远镜的FOCAS开发了三种类型的大型VPH光栅(110×106 mm〜2),在可见光区域具有高效率,高色散和小波前误差。但是,由于光栅的厚度,很难制造更长波长的VPH光栅。为了克服这个问题,通过优化曝光条件并引入有源相位控制技术,我们成功开发了用于光通信波长(1550 nm)的VPH光栅,其衍射效率超过90%(TE模式),并具有0.047的高折射率调制。我们将这些技术扩展到用于天文观测的设备,旨在将K波段VPH光栅用于Subaru望远镜的MOIRCS。所得的光栅具有91.5%的高衍射效率,320nm的光谱带宽(FWHM)和r.m.s的小波前误差0.03波。在2200 nm这种VPH光栅是用于近红外区域天文观测的有前途的分散设备。

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