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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Programmable microshutter arrays for the JWST NIRSpec: optical performance
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Programmable microshutter arrays for the JWST NIRSpec: optical performance

机译:JWST NIRSpec的可编程微快门阵列:光学性能

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Two-dimensional microshutter arrays (MSAs) are being developed at the NASA Goddard Space Flight Center for the James Webb Space Telescope (JWST) for use as a programmable aperture mask for object selection for the Near Infrared Multiobject Spectrograph (NIRSpec). The MSAs are designed to provide high transmission efficiency for the selected objects and high on to off contrast ratio at the ∼35 K operating temperature of JWST. The arrays of shutters are produced from silicon nitride membranes on a 100×200 Μm pitch. Individual shutters consist of a shutter blade of silicon nitride suspended from the shutter frame by a nitride torsion flexure. The shutters are normally closed. All shutters in the array are opened by the scanning magnetic field, and are held open by an electrostatic potential applied between the open shutters and the shutter support grid electrodes. To close the required shutters for a specific configuration, the potential between the shutter to be deselected and the support frame is set to zero, allowing the shutter to close. In this way, full random access addressing is achieved. We have produced such shutters and have demonstrated mechanical actuation and selection. Optical tests of open and closed shutters have demonstrated the required contrast for the JWST application. The MSA is a pioneering technology that provides the most capable possible multiobject spectrograph for JWST. It provides high contrast selection, high transmission efficiency, and can meet the environmental requirements for JWST.
机译:美国国家航空航天局戈达德太空飞行中心正在为詹姆斯·韦伯太空望远镜(JWST)开发二维微快门阵列(MSA),用作近红外多物光谱仪(NIRSpec)的物镜选择对象。 MSA旨在为所选对象提供高传输效率,并在JWST的约35 K工作温度下提供高开/关对比度。百叶窗的阵列由氮化硅膜以100×200μm的间距产生。各个百叶窗由氮化硅的百叶窗叶片组成,该氮化硅的百叶窗叶片通过氮化物扭转挠曲而从百叶窗框架悬挂下来。百叶窗通常是关闭的。阵列中的所有快门都被扫描磁场打开,并被施加在打开的快门和快门支撑栅电极之间的静电势保持打开。为了关闭特定配置所需的百叶窗,要取消选择的百叶窗和支撑框架之间的电位设置为零,以使百叶窗关闭。以这种方式,实现了完全随机访问寻址。我们已经生产了这种百叶窗,并展示了机械驱动和选择。打开和关闭百叶窗的光学测试已经证明了JWST应用所需的对比度。 MSA是一项先锋技术,可为JWST提供功能最强大的多对象光谱仪。它提供高对比度选择,高传输效率,并且可以满足JWST的环境要求。

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