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Giant Goos-Hanchen shift in two different enantiomers' chiral molecules via quantum coherence

机译:巨型歌舞犬汉汉汉歇在两种不同的对映体的手性分子中转移,通过量子相干

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摘要

The Goos and Hanchen (GH) shifts in reflected and transmitted probe light through a cavity mixture of left-and right-handed chiral molecules into two enantiomer states are investigated. Due to the broken mirror symmetry of the left-and right-handed chiral molecules in the presence of cyclic population transfer, such quantum systems can be selectively excited because of the coexistence of one-and two-photon transitions. With the help of coupling Rabi frequency and damping effects due to scattering processes, the generated GH shifts accompanied by simultaneously negative and positive lateral shifts in reflected and transmitted probe lights are greatly enhanced. It is found that the large negative and positive GH shifts are available in the presence of multiphoton resonance and off-resonance conditions for two different enantiomers' chiral molecules. Moreover, the switching between super-luminal and subluminal light propagation is extremely dependent on choosing the left-and right-handed chiral molecules. Furthermore, the effects of pulse shape and mode of Laguerre-Gaussian probe light on the GH shifts that lead to a switch between negative and positive shift are also studied. The negative and positive GH shifts in a reflected and transmitted probe beam for an incident Gaussian and different mode of Laguerre-Gaussian shaped beam with various widths by the use of two different enantiomers' chiral molecules are also discussed. (C) 2018 Optical Society of America.
机译:通过左手右手手性分子的腔混合物将RoOS和Hanchen(GH)移位在反射和透射探测光中,将左右手性分子的腔混合物分成两个对映体状态。由于在存在循环群体转移中左手右手手性分子的破碎镜对称,由于单光子过渡的共存,这种量子系统可以选择性地激发。借助耦合Rabi频率和由于散射工艺而阻尼效果,产生的产生GH偏移在反射和传输的探针灯中同时负极和正横向偏移伴随着。结果发现,对于两种不同对映体的手性分子的多光子共振和偏离共振条件存在大负和正GH偏移。此外,超级腔和高压型光传播之间的切换极大地取决于选择左手和右手的手性分子。此外,还研究了Laguerre-Gaussian探针光对导致负极和正换档之间的转换的GH变速器的脉冲形状和模式的影响。还讨论了通过使用两种不同的对映体的手性分子的反射和传输探测光束的反射和透射探针梁的反射和传输的探针光束,以及通过各种宽度的不同宽度的不同宽度。 (c)2018年光学学会。

著录项

  • 来源
    《Applied optics》 |2018年第27期|共8页
  • 作者

    Nasehi R.; Mahmoudi M.;

  • 作者单位

    Univ Zanjan Dept Phys Univ Blvd Zanjan 4537138791 Iran;

    Univ Zanjan Dept Phys Univ Blvd Zanjan 4537138791 Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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