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On the viability of achieving chiral separation through the optical manipulation of molecules

机译:关于通过分子光学操纵实现手性分离的可行性

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Several different optical methods have recently been proposed for the potential separation of chiral molecules according to their intrinsic handedness. Applying fundamental symmetry and electrodynamical principles provides a perspective that casts doubt over the viability of some of the more extravagant claims. However there is a genuine basis for achieving chiral separation by using circularly polarized light to deliver chirally sensitive optical forces. The mechanism comes into play when molecules (or nanoscale particles) are optically trapped in a laser beam by forward Rayleigh scattering, as a result of trapping forces that depend on positioning within the beam profile. In such a setup, chiral molecules experience subtle additional forces associated with a combination of electric and magnetic transition dipoles; when circularly polarized light is used for the trapping, a discriminatory response can be identified that has the capacity to separate left- and right-handed molecular isomers. Here, clear differences can be observed between the behavior of isotropic liquids and poled solutions or liquid crystals. Detailed analysis provides an objective basis to assess new prospects for the recognition and differentiation of molecules with opposite chiral form, identifying and paving the way for future commercial applications.
机译:最近已经提出了几种不同的光学方法,以根据其内在手性潜在地分离手性分子。应用基本对称和电动原理提供了一个令人怀疑在一些更奢侈的索赔的可行性方面的视角。然而,通过使用圆偏振光来实现手性光力的手性分离存在真正的基础。当分子(或纳米级粒子)通过前向瑞利散射光学捕获分子(或纳米级粒子)时,该机制作为捕获力的捕获力捕获,这取决于取决于梁轮廓内的定位。在这种设置中,手性分子经历了与电磁转变偶极子组合相关的细微额外的力;当循环偏振光用于捕获时,可以识别歧视性反应,其具有分离左右分子异构体的能力。这里,可以在各向同性液体和抛光溶液或液晶的行为之间观察到透明差异。详细分析提供了一种客观的基础,可以评估具有相反手性形式的分子的新前景,识别和铺平以供未来的商业应用方式。

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