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首页> 外文期刊>Origins of Life and Evolution of Biospheres >Astronomical Sources of Circularly Polarized Light and the Origin of Homochirality
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Astronomical Sources of Circularly Polarized Light and the Origin of Homochirality

机译:圆偏振光的天文来源和同手性的起源

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摘要

Possible astronomical sources of ultraviolet circularly polarized light(UVCPL) which might be responsible for enantiomeric selection in interstellarorganic molecules are considered, Synchrotron radiation from magnetic neutronstars has been suggested as a possible source of UVCPL. However, synchrotronradiation in these situations is not predicted to be strongly circularlypolarized. Very few such sources show optical synchrotron radiation and in thefew that do circular polarization has not been observed. Magnetic white dwarfsand white dwarf binaries (Polars) can be highly circularly polarized but anyeffect on molecular clouds and star formation regions must rely on rare chance encounters. Recent observations show that substantial levels of circularpolarization are present in reflection nebulae in star formation regions. Thismechanism produces polarized light exactly when and where it is needed inregions where star formation is occurring and organic molecules are known to be present.
机译:考虑到可能是星际有机分子中对映异构体选择的紫外线圆偏振光(UVCPL)的天文来源,已建议将来自磁中子星的同步辐射作为UVCPL的可能来源。但是,在这些情况下,同步辐射不会被预测为强圆极化。极少的此类源显示出光学同步加速器辐射,并且很少观察到发生圆偏振。磁性白矮星和白矮星双星(极星)可以是高度圆极化的,但是对分子云和恒星形成区域的任何影响都必须依靠罕见的偶然相遇。最近的观察表明,恒星形成区域的反射星云中存在大量的圆极化。这种机制会在发生恒星形成和已知存在有机分子的区域中,准确地在需要的时间和地点产生偏振光。

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