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Curvature-induced Symmetry Lowering and Anomalous Dispersion of Phonons in Single-Walled Carbon Nanotubes

机译:单壁碳纳米管中声子的曲率对称性降低和异常分散

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Here we report rich and new resonant Raman spectral features for several sub-nanometer diameter single wall carbon nanotubes (sub-nm SWNTs) samples grown using chemical vapor deposition technique operating at different temperatures. We find that the high curvature in sub-nm SWNTs leads to (i) an unusual S-like dispersion of the G-band frequency due to perturbations caused by the strong electron-phonon coupling, and (ii) an activation of diameter-selective intermediate frequency modes that are as intense as the radial breathing modes (RBMs). Furthermore, an analytical approach which includes the effects of curvature into the overlap integral and the energy gap between the van Hove singularities is discussed. Lastly, we show that the phonon spectra for sub-nm SWNTs obtained from the molecular dynamic simulations which employs a curvature-dependent force field concur with our experimental observations.
机译:在这里,我们报告了使用在不同温度下操作的化学气相沉积技术生长的几个亚纳米直径单壁碳纳米管(Sub-NM SWNT)样品的丰富和新的谐振拉曼光谱特征。我们发现Sub-NM SWNT中的高曲率导致(i)由于由强电子 - 声子耦合引起的扰动而导致的G波段频率的异常S样分散,并且(ii)直径选择性的激活中间频率模式与径向呼吸模式(RBMS)一样强烈。此外,讨论了一种分析方法,其包括曲率效果进入重叠积分和克洛夫奇异性之间的能隙。最后,我们表明,从分子动态模拟获得的子NM SWNT的声光谱与我们的实验观察结果采用曲率依赖性力场同样。

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