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DMDs for multi-object near-infrared spectrographs in astronomy

机译:天文多目标近红外光谱仪的DMD

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The Digital Micromirror Device (DMD), typically used in projection screen technology, has utility in instrumentation for astronomy as a digitally programmable slit in a spectrograph. When placed at an imaging focal plane the device can be used to selectively direct light from astronomical targets into the optical path of a spectrograph, while at the same time directing the remaining light into an imaging camera, which can be used for slit alignment, science imaging, or both. To date the use of DMDs in astronomy has been limited, especially for instruments that operate in the near infrared (1 - 2.5 μm). This limitation is due in part to a host of technical challenges with respect to DMDs that, to date, have not been thoroughly explored. Those challenges include operation at cryogenic temperature, control electronics that facilitate DMD use at these temperatures, window coatings properly coated for the near infrared bandpass, and scattered light. This paper discusses these technical challenges and presents progress towards understanding and mitigating them.
机译:通常用于投影屏技术的数字微镜设备(DMD)作为光谱仪中的数字可编程缝隙,在天文学仪器中具有实用性。当放置在成像焦平面上时,该设备可用于将来自天文目标的光选择性地引导到光谱仪的光路中,同时将剩余的光引导到成像相机中,从而可用于狭缝对准,科学成像,或两者兼而有之。迄今为止,在天文学中DMD的使用受到了限制,特别是对于在近红外(1-2.5μm)下运行的仪器。这种局限性部分是由于迄今为止尚未对DMD进行的一系列技术挑战而引起的。这些挑战包括在低温下运行,在这些温度下促进DMD使用的控制电子设备,为近红外带通正确涂覆的窗膜以及散射光。本文讨论了这些技术挑战,并提出了在理解和缓解这些挑战方面的进展。

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