arXiv · 1401.0252
Quadrupole Plasmon Excitations in Confined One-dimensional Systems
Abstract
The existence and nature of a new mode of electronic collective excitations (quadrupole plasmons) in confined one-dimensional electronic systems have been predicted by an eigen-equation method. The eigen-equation based on the time-dependent density-functional theory is presented for calculating the collective excitations in confined systems. With this method, all modes of collective excitations in the 1D systems may be found out. These modes include dipole plasmons and quadrupole plasmons. The dipole plasmon mode corresponds to the antisymmetric oscillation of induced charge, and can be shown as a resonance of the dipole response. In the quadrupole plasmon modes, the induced charge distribution is symmetric, and the dipole response vanishes. The motion of the electrons in the quadrupole modes is similar to the vibration of atoms in the breathing mode of phonons. This type of plasmons can be shown as a resonance of the quadrupole response, and has to be excited by al non-uniform field.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Reng-lai Wu, Yabin Yu, Hong-jie Xue. 2014-01-01. Quadrupole Plasmon Excitations in Confined One-dimensional Systems. https://doi.org/10.1209/0295-5075%2F108%2F27001
Cite the original work for its findings. Save a collection to share your selection of sources.