Datsyuk Vitaly V, Pavlyniuk Oleg R
Department of Physics, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01601, Kyiv, Ukraine.
Nanoscale Res Lett. 2017 Dec;12(1):473. doi: 10.1186/s11671-017-2230-6. Epub 2017 Aug 1.
The common definition of the spatially dispersive permittivity is revised. The response of the degenerate electron gas on an electric field satisfying the vector Helmholtz equation is found with a solution to the Boltzmann equation. The calculated longitudinal dielectric function coincides with that obtained by Klimontovich and Silin in 1952 and Lindhard in 1954. However, it depends on the square of the wavenumber, a parameter of the vector Helmholtz equation, but not the wave vector of a plane electromagnetic wave. This new concept simplifies simulation of the nonlocal effects, for example, with a generalized Lorents-Mie theory, since no Fourier transforms should be made. The Fresnel coefficients are generalized allowing for excitation of the longitudinal electromagnetic waves. To verify the theory, the extinction spectra for silver and gold nanometer-sized spheres are calculated. For these particles, the generalized Lorents-Mie theory gives the blue shift and broadening of the plasmon resonance which are in excellent agreement with experimental data. In addition, the nonlocal theory explains vanishing of the plasmon resonance observed for gold spheres with diameters less than or equal to 2 nm. The calculations using the Klimontovich-Silin-Lindhard and hydrodynamic dielectric functions for silver are found to give close results at photon energies from 3 to 4 eV. We show that the absolute values of the wavenumbers of the longitudinal waves in solids are much higher than those of the transverse waves.
对空间色散介电常数的常见定义进行了修订。通过求解玻尔兹曼方程,得出了简并电子气在满足矢量亥姆霍兹方程的电场中的响应。计算得到的纵向介电函数与1952年克里蒙托维奇和西林以及1954年林哈德所得到的结果一致。然而,它取决于矢量亥姆霍兹方程的一个参数——波数的平方,而不是平面电磁波的波矢。这个新概念简化了非局部效应的模拟,例如,采用广义洛伦兹 - 米理论时,因为无需进行傅里叶变换。菲涅耳系数得到了推广,从而能够激发纵向电磁波。为了验证该理论,计算了银和金纳米尺寸球体的消光光谱。对于这些粒子,广义洛伦兹 - 米理论给出了等离子体共振的蓝移和展宽,与实验数据吻合得非常好。此外,非局部理论解释了直径小于或等于2 nm的金球所观察到的等离子体共振的消失。发现在3至4 eV的光子能量下,使用克里蒙托维奇 - 西林 - 林哈德介电函数和流体动力学介电函数对银进行计算会得到相近的结果。我们表明,固体中纵向波的波数绝对值远高于横向波的波数绝对值。