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首页> 外文期刊>International Journal of Quantum Chemistry >Ab initio electron energy-loss spectra and depolarization effects: Application to carbon nanotubes
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Ab initio electron energy-loss spectra and depolarization effects: Application to carbon nanotubes

机译:从头算电子能量损失谱和去极化效应:在碳纳米管中的应用

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We perform ab initio calculations of the optical absorption and electron energy-loss spectra of (m, 0) single-walled carbon nanotubes (with m ≠ 3n for m = 7-25) in the framework of a "sum over states" (SOS) treatment of the Kohn-Sham (KS) single-particle orbitals and energies (CRYSTAL program). This approach tested on hexagonal boron nitride enables to fully assign the interband transitions in the imaginary part of the dielectric constant, in terms of atomic orbitals. As these calculations could not take into account the local field effects (depolarization effects), which take place for perpendicular polarizations in 2D and 1D periodic systems, we apply a simple method based on the Clausius-Mossotti formula, relating the SOS and coupled-perturbed KS polarizability values. This approach reproduces the main features of the spectra of boron nitride (001) surface and carbon nanotubes.
机译:我们在“状态总和”(SOS)的框架内从头开始计算(m,0)个单壁碳纳米管(对于m = 7-25,m≠3n)的光吸收光谱和电子能量损失谱)对Kohn-Sham(KS)单粒子轨道和能量的处理(CRYSTAL程序)。在六方氮化硼上测试的这种方法能够根据原子轨道在介电常数的虚部完全分配带​​间跃迁。由于这些计算不能考虑2D和1D周期系统中垂直极化发生的局部场效应(去极化效应),因此我们基于Clausius-Mossotti公式应用了一种简单的方法,将SOS与耦合扰动相关KS极化率值。这种方法再现了氮化硼(001)表面和碳纳米管光谱的主要特征。

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