首页> 外文会议>Conference on MOEMS and miniaturized systems VIII; 20090127-28; San Jose, CA(US) >New astronomical instrument using MOEMS-based programmable diffraction gratings
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New astronomical instrument using MOEMS-based programmable diffraction gratings

机译:使用基于MOEMS的可编程衍射光栅的新型天文仪器

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Programmable Micro-Diffraction Gratings (PMDG) are a new type of MOEMS, opening new observational capabilities in future astronomical instrumentation. Programmable gratings are based on a serial of parallel ribbons able to move out of the plane. By using electrostatic force, ribbons are actuated and a grating could be formed. A few ribbons are efficient enough to diffract the light; then, locally, this grating acts as a ON-OFF switch. If the spectrum is focused on this type of device, by setting ON and OFF a selected number of "wavelengths", the spectral response of the spectrograph is programmable. Programmable gratings permit the design of programmable spectrometers, useful in space mission, like ESA Darwin mission. This mission will search, detect and characterize exo-planets, using high-contrast nulling interferometry, coupled with spectroscopic observation. We propose a new observational concept for Darwin using a programmable spectrometer. By tailoring the spectral response, sensitivity as well as signal to noise ratio of the instrument will be increased. A demonstrator breadboard with a PMDG device has been designed and built. This demonstrator, including adjustable sources (location, spectral type, brightness), permits the tailoring of spectral patterns by the PMDG component. Two parallel spectral and imaging channels are used for the optical analysis of the tailored signals. Typical exo-planet spectra have been generated and set by the PMDG. Simulated signatures of exo-planets with life forms are clearly revealed and characterized on the breadboard, demonstrating successfully our concept. Several new observational modes using PMDG devices in future astronomical instrumentation is then foreseen.
机译:可编程微衍射光栅(PMDG)是一种新型的MOEMS,为未来的天文仪器提供了新的观测功能。可编程光栅基于一系列能够移出平面的平行色带。通过使用静电力,色带被致动并且可以形成光栅。几根色带足以使光衍射。然后,在本地,此光栅充当ON-OFF开关。如果光谱集中在这种类型的设备上,则通过设置选定数量的“波长”为ON和OFF,可以对光谱仪的光谱响应进行编程。可编程光栅允许设计可用于太空飞行任务的可编程光谱仪,例如ESA达尔文飞行任务。该任务将使用高对比度调零干涉仪结合光谱观测来搜索,检测和表征系外行星。我们使用可编程光谱仪为达尔文提出了一个新的观测概念。通过调整频谱响应,可以提高仪器的灵敏度以及信噪比。设计并制造了带有PMDG设备的演示器面包板。该演示器包括可调光源(位置,光谱类型,亮度),可通过PMDG组件定制光谱模式。两个平行的光谱和成像通道用于对定制信号进行光学分析。 PMDG已生成并设置了典型的系外行星谱。面包板上清楚显示并模拟了系外行星的模拟签名,并成功地展示了我们的概念。然后可以预见在未来的天文仪器中使用PMDG设备的几种新的观测模式。

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