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Holographic Spectrograph for Space Telescope

机译:空间望远镜的全息光谱仪

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摘要

A spectrograph is described which is made with dual Holographic Optical Elements (HOEs) which are identical and parallel to each other. Both optics are collimating transmission HOEs with focal points that are at equal and opposite distances from each other. The identical HOEs are formed by the interference of a plane wave parallel to the grating plane with an off-axis spherical wave originating in the near-field. In playback, a spectrum can be formed from a point source radiator placed at the position of the recording spherical wave. If played back at an arbitrary wavelength other than the recording wavelength, the image exhibits coma. This spectrograph is intended for an unusual configuration where many nearly monochromatic sources of known wavelengths are separately positioned relative to the first HOE. The special application is in a space telescope capable of resolving spectra from habitable planets within 10 pc. HOEs of this type could be fabricated on membrane substrates with a low areal mass and stowable on rolls for insertion into the second Lagrange point The intended application is for a 50 x 10 meter class primary objective holographic space telescope with 50 x 10 m HOEs in the spectrograph. We present a computer model of the spectrograph.. Experimental results are compared with predictions from theory. A single HOE is shown to perform over a wider bandwidth and is demonstrated.
机译:描述了一种光谱仪,其由双全息光学元件(锄头)制成,它们彼此相同并且平行。两个光学器件都是将传动锄头准直,其焦点彼此相等且相反的距离。通过平行于光栅平面的平面波的干扰形成相同的锄头,其具有源自近场的轴轴球面波。在播放时,可以通过放置在记录球面波的位置的点源辐射器形成频谱。如果以除记录波长以外的任意波长播放,则图像呈现昏迷。该光谱仪旨在用于不寻常的配置,其中已知波长的许多几乎单色源相对于第一锄头分别定位。特殊应用是在一个空间望远镜中,能够在10台PC内从可居住的行星解决光谱。这种类型的锄头可以在膜底板上制造,在具有低的面积质量和卷筒上的卷中,用于插入第二个拉格朗日点的预期应用是50 x 10米的主要目标全息空间望远镜,其中50 x 10米锄头光谱仪。我们介绍了一种光谱仪的计算机模型。实验结果与理论的预测进行了比较。显示单个锄头以在更宽的带宽上执行并进行证明。

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