论文标题
生命签名检测偏光仪LSDPOL的设计
Design of the Life Signature Detection Polarimeter LSDpol
论文作者
论文摘要
许多生物学产生的手性分子(例如氨基酸和糖)都偏爱左或右手的偏爱(同Riretality)。因此,由藻类和叶片等生物材料反射的光因此表现出少量的圆极化,这很大程度上取决于波长。我们的生命签名检测偏振仪(LSDPOL)经过优化,以衡量这些生活的特征。 LSDPOL是一种紧凑的光谱仪概念,没有运动部件即时测量线性和圆形极化在视野上平均,灵敏度高于1E-4。我们希望在验证其在地面和飞机上的性能后将仪器发射到轨道上。 LSDPOL基于具有图案化液晶的空间变化的四分之一波延迟器。它是最大化偏振灵敏度的第一个光学元素。由于必须将光谱仪的入口狭缝和光谱仪的入口狭缝成像到检测器上,因此缝隙用作光圈,并且内部场停止限制了视场。延迟器的快速轴角沿一个空间尺寸线性变化。固定的四分之一波弹药与极化光栅作用作为分散器和偏光梁切口。因此,在整个光谱的不兼容调制频率上编码了圆形和线性极化,从而最大程度地减少了从线性到圆形极化的电势串扰。
Many biologically produced chiral molecules such as amino acids and sugars show a preference for left or right handedness (homochirality). Light reflected by biological materials such as algae and leaves therefore exhibits a small amount of circular polarization that strongly depends on wavelength. Our Life Signature Detection polarimeter (LSDpol) is optimized to measure these signatures of life. LSDpol is a compact spectropolarimeter concept with no moving parts that instantaneously measures linear and circular polarization averaged over the field of view with a sensitivity of better than 1e-4. We expect to launch the instrument into orbit after validating its performance on the ground and from aircraft. LSDpol is based on a spatially varying quarter-wave retarder that is implemented with a patterned liquid-crystal. It is the first optical element to maximize the polarimetric sensitivity. Since this pattern as well as the entrance slit of the spectrograph have to be imaged onto the detector, the slit serves as the aperture, and an internal field stop limits the field of view. The retarder's fast axis angle varies linearly along one spatial dimension. A fixed quarter-wave retarder combined with a polarization grating act as the disperser and the polarizing beam-splitter. Circular and linear polarization are thereby encoded at incompatible modulation frequencies across the spectrum, which minimizes the potential cross-talk from linear into circular polarization.