Halle Johannes, Néel Nicolas, Kröger Jörg
Institut für Physik, Technische Universität Ilmenau, D-98693 Ilmenau, Germany.
J Phys Chem Lett. 2021 Jul 29;12(29):6889-6894. doi: 10.1021/acs.jpclett.1c01802. Epub 2021 Jul 19.
Graphene phonons are excited by the local injection of electrons and holes from the tip of a scanning tunneling microscope. Despite the strong graphene-Ru(0001) hybridization, monolayer graphene unexpectedly exhibits pronounced phonon signatures in inelastic electron tunneling spectroscopy. Spatially resolved spectroscopy reveals that the strength of the phonon signal depends on the site of the moiré lattice with a substantial red-shift of phonon energies compared to those of free graphene. Bilayer graphene gives rise to more pronounced spectral signatures of vibrational quanta with energies nearly matching the free graphene phonon energies. Spectroscopy data of bilayer graphene indicate moreover the presence of a Dirac cone plasmon excitation.
石墨烯声子是由扫描隧道显微镜尖端局部注入的电子和空穴激发的。尽管石墨烯与Ru(0001)有很强的杂化作用,但单层石墨烯在非弹性电子隧穿光谱中意外地表现出明显的声子特征。空间分辨光谱表明,声子信号的强度取决于莫尔晶格的位置,与自由石墨烯相比,声子能量有显著的红移。双层石墨烯产生了更明显的振动量子光谱特征,其能量几乎与自由石墨烯声子能量相匹配。此外,双层石墨烯的光谱数据表明存在狄拉克锥等离子体激元激发。