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Photonic mid-infrared nulling for exoplanet detection on a planar chalcogenide platform

机译:平面硫属化物平台上的Exoplanet检测中的光子中红外线零

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The future of exoplanet detection lies in the mid-infrared (MIR). The MIR region contains the blackbody peak of both hot and habitable zone exoplanets, making the contrast between starlight and planet light less extreme. It is also the region where prominent chemical signatures indicative of life exist, such as ozone at 9.7 μm. At a wavelength of 4 μm the difference in emission between an Earth-like planet and a star like our own is 80 dB. However a jovian planet, at the same separation exhibits 60 dB of contrast, or only 20 dB if it is hot due to its formation energy or being close to its host star. A two dimensional nulling interferometer, made with chalcogenide glass, has been measured to produce a null of 20 dB, limited by scattered light. Measures to increase the null depth to the theoretical limit of 60 dB are discussed.
机译:Exoplanet检测的未来位于红外线(MIR)中。 MIR地区含有炎热居住区的黑体峰值,使星光和行星之间的对比不太极端。它也是指示生命的突出化学签名的区域,例如臭氧为9.7μm。在4μm的波长下,地球片之间的排放差异和我们自己的恒星是80 dB。然而,如果由于其形成能量或接近其宿主恒星,则在相同的分离时,在相同的分离中表现出60 dB的对比度,或者仅是20dB的炎热。已经测量了用硫属化物玻璃制成的二维无核干涉仪,以产生20dB的零,限制散射光。讨论了将空深度增加到60dB的理论极限的措施。

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