Galperin Michael, Ratner Mark A, Nitzan Abraham
Theoretical Division and Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
J Chem Phys. 2009 Apr 14;130(14):144109. doi: 10.1063/1.3109900.
We present a theory for Raman scattering by current-carrying molecular junctions. The approach combines a nonequilibrium Green's function (NEGF) description of the nonequilibrium junction with a generalized scattering theory formulation for evaluating the light scattering signal. This generalizes our previous study [M. Galperin and A. Nitzan, Phys. Rev. Lett. 95, 206802 (2005); J. Chem. Phys. 124, 234709 (2006)] of junction spectroscopy by including molecular vibrations and developing machinery for calculation of state-to-state (Raman scattering) fluxes within the NEGF formalism. For large enough voltage bias, we find that the light scattering signal contains, in addition to the normal signal associated with the molecular ground electronic state, also a contribution from the inverse process originated from the excited molecular state as well as an interference component. The effects of coupling to the electrodes and of the imposed bias on the total Raman scattering as well as its components are discussed. Our result reduces to the standard expression for Raman scattering in the isolated molecule case, i.e., in the absence of coupling to the electrodes. The theory is used to discuss the charge-transfer contribution to surface enhanced Raman scattering for molecules adsorbed on metal surfaces and its manifestation in the biased junction.
我们提出了一种关于载流分子结拉曼散射的理论。该方法将非平衡结的非平衡格林函数(NEGF)描述与用于评估光散射信号的广义散射理论公式相结合。这扩展了我们之前关于结光谱的研究[M. 加尔佩林和A. 尼赞,《物理评论快报》95,206802(2005);《化学物理杂志》124,234709(2006)],通过纳入分子振动并开发在NEGF形式体系内计算态到态(拉曼散射)通量的方法。对于足够大的电压偏置,我们发现光散射信号除了包含与分子基电子态相关的正常信号外,还包含源自激发分子态的逆过程的贡献以及一个干涉分量。讨论了与电极耦合以及施加的偏置对总拉曼散射及其分量的影响。我们的结果在孤立分子的情况下,即不存在与电极耦合时,简化为拉曼散射的标准表达式。该理论用于讨论吸附在金属表面的分子的电荷转移对表面增强拉曼散射的贡献及其在偏置结中的表现。