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Astrobiological Polarimeter

机译:天体生物学旋光仪

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Chirality is an excellent indicator of life, but naturally occurring astrobiological (as well as terrestrial) samples nearly always exhibit massive depolarizing light scattering, which renders conventional polarimeters useless. For astrobiological applications, we instead consider a novel polarimeter originally developed for non-invasive human-glucose measurement. It involves deliberately rotating in time the plane of polarization of a linearly polarized beam and detecting the shift in the plane of the rotating linearly polarized component of the transmitted light from a chiral sample relative to the input polarization plane. We find that this polarimeter can operate in 3 orders of magnitude more depolarizing scattering than conventional polarimeters. Furthermore, it can also be designed to be lightweight, compact, and energy efficient.
机译:手性是生命的极好指标,但是自然发生的天体生物学(以及陆地)样品几乎总是显示大量的去偏振光散射,这使传统的旋光仪毫无用处。对于天体生物学应用,我们取而代之的是最初为非侵入性人体葡萄糖测量开发的新型旋光仪。它涉及到及时地旋转线性偏振光束的偏振平面,并检测来自手性样品的透射光的旋转线性偏振分量的旋转平面相对于输入偏振平面的偏移。我们发现,该旋光仪比常规旋光仪能在多3个数量级的去极化散射中工作。此外,还可以将其设计为轻巧,紧凑且节能。

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