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Programmable spectrometer using MOEMS devices for spaceapplications

机译:使用MOEMS装置的可编程光谱仪用于太空应用

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A new class of spectrometer can be designed using programmable components such as MOEMS which enable to tune the beam in spectral width and central wavelength. It becomes possible to propose for space applications a spectrometer with programmable resolution and adjustable spectral bandwidth.The proposed way to tune the output beam is to use the diffraction effect with the so-called PMDG (Programmable Micro Diffraction Gratings ) diffractive MEMS. In that case, small moving structures can form programmable gratings, diffracting or not the incoming light.In the proposed concept, the MOEMS is placed in the focal plane of a first diffracting stage (using a grating for instance). With such implementation, the MOEMS component can be used to select some wavelengths (for instance by reflecting them) and to switch-off the others (for instance by diffracting them). A second diffracting stage is used to recombine the beam composed by all the selected wavelengths. It becomes then possible to change and adjust the filter in λ and Δλ .This type of implementation is very interesting for space applications (Astronomy, Earth observation, planetary observation). Firstly because it becomes possible to tune the filtering function quasi instantaneously. And secondly because the focal plane dimension can be reduced to a single detector (for application without field of view) or to a linear detector instead of a 2D matrix detector (for application with field of view) thanks to a sequential acquisition of the signal.
机译:可以使用诸如MOEMS之类的可编程组件来设计新型光谱仪,该组件能够对光谱宽度和中心波长的光束进行调谐。对于空间应用,可以提出一种具有可编程分辨率和可调光谱带宽的光谱仪。 提出的调整输出光束的方法是使用所谓的PMDG(可编程微衍射光栅)衍射MEMS的衍射效应。在那种情况下,小的移动结构可以形成可编程的光栅,使入射的光或不衍射。 在提出的概念中,将MOEMS放置在第一衍射级的焦平面中(例如,使用光栅)。通过这种实现方式,MOEMS组件可用于选择某些波长(例如,通过反射它们)并关闭其他波长(例如,通过衍射它们)。第二衍射级用于重新组合由所有选定波长组成的光束。这样就可以改变和调整λ和Δλ中的滤波器。 这种类型的实现对于空间应用(天文学,地球观测,行星观测)非常有趣。首先,因为有可能准时地调整滤波功能。其次,由于信号的顺序采集,焦平面尺寸可以减小到单个检测器(用于无视场的应用)或线性检测器,而不是2D矩阵检测器(用于视场的应用)。

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