论文标题
与纳米化颗粒和量子点分子接触的杂交光学声子模式的耦合振荡器模型
Coupled oscillators model for hybridized optical phonon modes in contacting nanosized particles and quantum dot molecules
论文作者
论文摘要
研究了与单个颗粒相比,在接触纳米颗粒中的光谱光谱的修饰。介电和半导体颗粒中的光子声子服从具有差异元素边界条件的欧几里得公制klein fock-gordon方程。后者应该用于数值求解,以用于互穿球体的歧管。提议用更简单的耦合振荡器模型(COM)替换此问题,其中振荡器归因于粒子的每个声子模式,并且颗粒重叠会导致这些振荡器的其他耦合出现,而这些振荡器的幅度与重叠体积的幅度成比例。对于不太大的重叠,该模型以良好的准确性描述了原始特征值问题的解决方案。特别是,它超越了各向同性S模式,该模式已被证明是针对二聚体和四聚体的P模式的。建议将COM应用于最近制造的二聚体纳米颗粒和量子点的描述。获得的结果与纳米座中光音子的动力矩阵方法一致。后者用于证明相花的颗粒之间的范德华接触导致光子光谱的微小修饰,因此,在讨论通过纳米曲线讨论振动激发的传播时,这可能会被忽略。还考虑了区分二聚和分布的单个颗粒与拉曼光谱的可能性。
Modification of optical phonon spectra in contacting nanoparticles as compared to the single ones is studied. Optical phonons in dielectric and semiconducting particles obey the Euclidean metric Klein-Fock-Gordon equation with Dirichlet boundary conditions. The latter is supposed to be solved numerically for manifolds of interpenetrating spheres. It is proposed to replace this problem with the simpler-to-solve coupled oscillators model (COM), where an oscillator is attributed to each phonon mode of a particle and the particles overlap leads to appearance of additional couplings for these oscillators with the magnitude proportional to the overlapped volume. For not too big overlaps this model describes solutions of the original eigenvalue problem on a good level of accuracy. In particular, it works beyond isotropic s modes, which has been demonstrated for p modes in dimer and also for tetramer. It is proposed to apply COM for the description of recently manufactured dimer nanoparticles and quantum dots. The obtained results are in agreement with the dynamical matrix method for optical phonons in nanodiamonds. The latter is used to demonstrate that the van der Waals contacts between faceted particles lead to very small modifications of the optical phonon spectra, which therefore could be neglected when discussing the propagation of vibrational excitations via a nanopowder. The possibility to distinguish between dimerized and size-distributed single particles from their Raman spectra is also considered.