首页> 外文会议>Conference on Instruments, Methods, and Missions for Astrobiology >Advanced search for the origin of life's homochirality : asymmetric photon induced processes on chiral compounds with far UV circularly polarized synchrotron radiation
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Advanced search for the origin of life's homochirality : asymmetric photon induced processes on chiral compounds with far UV circularly polarized synchrotron radiation

机译:高级搜索生命的初始主义的起源:具有远UV圆偏振同步辐射的手​​性化合物上的不对称光子诱导过程

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Assuming an extra-terrestrial formation of life's molecular building blocks such as amino-acids, a possible abiotic explanation for the selection of the L enantiomers could be the exposure to an asymmetric bias such as far UV Circularly Polarized Light (CPL), during their journey towards Earth, inducing some enantiomeric excess (e.e) that could then be amplified on Earth via suitable autocatalytic mechanisms. Synchrotron Radiation (SR), with its intense flux and broad tunability, is a unique tool which mimics such an interstellar far UV CPL. We have recently employed it to study : (1) The irradiation of solid films of the amino acid D,L-leucine, I.e. under relevant astrophysical conditions. Starting from racemic D,L-leucine irradiated with CPL SR beam at 6.8 eV (182 run), we have been able to induce by enantioselective photolysis an e.e. of 2.6 %, as measured by chiral-sensitive CG-MS analysis, in accordance with the CD spectrum recorded on the same type of sample. (2) CPL-induced gas phase photoionization of chiral molecules. By measuring the angular distribution of photoelectrons ejected from pure enantiomers, we observed a strong anisotropy (up to 16 %) in the forward/backward direction with respect to the light propagation axis. Because of momentum conservation, such an effect is accompanied by an asymmetric recoil of the corresponding ions that could lead to a high e.e. Future prospects on the new VUV SR beamline DESIRS at SOLEIL are presented.
机译:假设氨基酸如氨基酸如氨基酸的额外地层形成,用于选择L对映体的可能的非生物解释可能是在旅程中暴露于不对称偏差(如紫外线圆偏振光(CPL)的不对称偏差朝向地球,诱导一些映体过量(EE),然后可以通过合适的自催化机制在地球上扩增。同步辐射(SR),具有激烈的助焊性和广泛的可调性,是一种独特的工具,模仿这种星际远远紫外线CPL。我们最近使用它来研究:(1)氨基酸D,L-亮氨酸的固体膜的照射,即在相关的天体物理条件下。从外消旋D,用CPL SR光束照射的L-亮氨酸在6.8eV(182次)中,我们能够通过对映射性光解诱导E.E.通过手性敏感性CG-MS分析测量,根据记录在相同类型的样品上的CD光谱来测量2.6%。 (2)CPL诱导的手性分子的气相光化。通过测量从纯对映体中喷射的光电子的角分布,我们在向前/向后方向上观察到光传播轴的强四个四等异细胞复制(高达16%)。由于动量节约,这种效果伴随着可能导致高级离子的不对称反射。介绍了Soleil新的VUV SR Beamline Desirs上的未来前景。

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