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The multi-object adaptive optics system for the Gemini Infra-Red Multi-Object Spectrograph

机译:Gemini红外多物体光谱仪的多对象自适应光学系统

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The Gemini Infra-Red Multi-Object Spectrograph (GIRMOS) is a four-arm, Multi-Object Adaptive Optics (MOAO) IFU spectrograph being built for Gemini (commissioning in 2024). GIRMOS is being planned to interface with the new Gemini-North Adaptive Optics (GNAO) system, and is base lined with a requirement of 50% EE within a 0.1" spaxel at H-band. We present a design and forecast the error budget and performance of GIRMOS-MOAO working behind GNAO. The MOAO system will patrol the 2' field of regard of GNAO, utilizing closed loop GLAO or MCAO for lower order correction. GIRMOS MOAA will perform tomographic reconstruction of the turbulence using the GNAO WFS, and utilize order 16x16 actuator DMs operating in open loop to perform an additional correction from the Pseudo Open Loop (POL) slopes, achieving close to diffraction limited performance from the combined GNAO+MOAO correction. This high performance AO spectrograph will have the broadest impact in the study of the formation and evolution of galaxies, but will also have broad reach in fields such as star and planet formation within our Milky Way and supermassive black holes in nearby galaxies.
机译:Gemini红外线多物体光谱仪(Girmos)是一款四臂,多对象自适应光学(MoAO)IFU Spectrapher,适用于Gemini(2024年调试)。计划与新的双子座 - 北自适应光学(GNAO)系统接口,并在H频段的0.1英寸Spaxel内衬里衬里的基础。我们提供了一个设计并预测错误预算和错误预算Girmos-Moao在GNAO后面工作的表现。MOAO系统将巡逻2'GNAO领域,利用闭环glao或MCAO进行较低的校正。Girmos MoAA将使用GNAO WFS进行断层切断重建湍流,并利用在开环中操作的订购16x16执行器DMS,以从伪开环(POL)斜坡执行额外的校正,从组合的GNAO + MOAO校正实现接近衍射有限的性能。这种高性能AO光谱仪在研究中具有最广泛的影响星系的形成和演化,但也将在我们的银河系中的星球和行星形成等领域广泛覆盖,附近的星系中的超大自主黑洞。

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