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首页> 外文期刊>The Journal of Chemical Physics >ON THE ROLE OF ELECTROMAGNETIC FIELD GRADIENTS IN SURFACE RAMAN SCATTERING BY MOLECULES ADSORBED ON SINGLE CRYSTAL METAL SURFACES
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ON THE ROLE OF ELECTROMAGNETIC FIELD GRADIENTS IN SURFACE RAMAN SCATTERING BY MOLECULES ADSORBED ON SINGLE CRYSTAL METAL SURFACES

机译:电场梯度在单晶金属表面吸附分子在拉曼散射中的作用

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摘要

Bands normally forbidden in the vibrational Raman spectra of molecules appear with some intensity when they are adsorbed on solid surfaces. The origin of this intensity can, in principle, be accounted for by two mechanisms. Since the symmetry of the adsorbed molecule is lower than that of the free molecule, relaxed selection rules result. Alternatively, the large gradient in the normal component of the electromagnetic field near a conducting surface can induce scattering through the dipole-quadrupole polarizability. To assess the relative importance of these two mechanisms, the field gradient at the surface of a Ag(111) crystal was varied by using different incident laser frequencies and its effect on the relative intensity of a putative quadrupole mode monitored. The intensity of the mode remained constant over the frequency region in which the field gradient varied. It was concluded that the field gradient mechanism is not important, at least for molecules physically adsorbed on flat surfaces. (C) 1996 American Institute of Physics. [References: 18]
机译:分子的振动拉曼光谱中通常禁止的能带在吸附到固体表面时会以一定强度出现。原则上,这种强度的起源可以由两种机制来解释。由于吸附分子的对称性低于游离分子的对称性,因此产生了宽松的选择规则。备选地,在导电表面附近的电磁场的法向分量中的大梯度会引起通过偶极-四极极化率的散射。为了评估这两种机制的相对重要性,通过使用不同的入射激光频率来改变Ag(111)晶体表面的场梯度,并监测其对推定四极杆模式的相对强度的影响。模式的强度在场梯度变化的频率区域上保持恒定。结论是,场梯度机制并不重要,至少对于物理吸附在平坦表面上的分子而言。 (C)1996年美国物理研究所。 [参考:18]

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