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Probing carbon isotope effects on the Raman spectra of graphene with different C-13 concentrations

机译:探索碳同位素对不同C-13浓度的石墨烯拉曼光谱的影响

摘要

A resonance Raman study of graphene samples with different C-13 isotopic concentrations and using different laser excitation energies is presented. The main Raman peaks (D, G, G*, and 2D) of graphene were measured and the dependence of their frequencies on the isotope atomic mass follows a simple harmonic oscillator relation. The G* and 2D double-resonance peak positions were measured as a function of the laser energy, and we observed that the slopes of the laser energy dependence are the same independently of isotope concentration. This result shows that isotopic substitution does not alter the electron and phonon dispersions near the K point of the graphene Brillouin zone. From the linewidth of G and 2D Raman peaks, we have also obtained a dependence of the phonon lifetime on the C-13 isotope concentration
机译:提出了不同C-13同位素浓度和使用不同激光激发能的石墨烯样品的共振拉曼研究。测量了石墨烯的主要拉曼峰(D,G,G *和2D),并且它们的频率对同位素原子质量的依赖性遵循简单的谐振子关系。根据激光能量测量G *和2D双共振峰位置,我们观察到激光能量依赖性的斜率是相同的,与同位素浓度无关。该结果表明,同位素取代不会改变石墨烯布里渊区K点附近的电子和声子分散。从G和2D拉曼峰的线宽,我们还获得了声子寿命对C-13同位素浓度的依赖性

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