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Electromagnetic interaction of atoms with an evanescent light field in attenuated total reflection spectroscopy

机译:衰减全反射光谱中原子与an逝光场的电磁相互作用

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摘要

The electromagnetic interaction of atoms with an evanescent light field is investigated with photon energy density and photon energy flux density using the Fresnel-Maxwell equations. The theory provides expressions of absorption signal intensities in attenuated total reflection spectroscopy for the p- and s-polarizations of the incident light, and relates them to the Goos-Hanchen shift. For an electric dipole interaction, the energy stored in the electric field of an evanescent light governs the absorption process, and hence the photon energy density and the photon energy flux density should be estimated from the energy stored in the electric field. The violation of equality between the portions of the energy stored respectively in the electric and magnetic fields yields the difference of the absorption signal intensity and its dependence on the incident angle between the s- and p-polarizations.
机译:使用菲涅耳-麦克斯韦方程,利用光子能量密度和光子能量通量密度研究原子与an逝光场的电磁相互作用。该理论提供了入射光的p偏振和s偏振的衰减全反射光谱中吸收信号强度的表达式,并将它们与Goos-Hanchen位移相关。对于电偶极子相互作用,an逝光的电场中存储的能量决定了吸收过程,因此应从电场中存储的能量中估算光子能量密度和光子能量通量密度。分别存储在电场和磁场中的能量部分之间相等性的违反会产生吸收信号强度的差异及其对s极化和p极化之间入射角的依赖性。

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  • 来源
    《Japanese journal of applied physics》 |2015年第3期|032001.1-032001.6|共6页
  • 作者

    Kazuyuki Muroo;

  • 作者单位

    Department of Applied Physics, Faculty of Technology, Tokyo University of Agriculture and Technology, Koganei, Tokyo 184-8588, Japan;

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  • 正文语种 eng
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