| Literature DB >> 28164998 |
Qiang Chen1,2, Hong Qin1,3, Jian Liu1.
Abstract
Exact eigen modes with orbital angular momentum (OAM) in the complex media of unmagnetized homogeneous plasmas are studied. Three exact eigen modes with OAM are derived, i.e., photons, phonons, and plasmons. The OAM of different plasma components are closely related to the charge polarities. For photons, the OAM of electrons and ions are of the same magnitude but opposite direction, and the total OAM is carried by the field. For the phonons and plasmons, their OAM are carried by the electrons and ions. The OAM modes in plasmas and their characteristics can be explored for potential applications in plasma physics and accelerator physics.Entities:
Year: 2017 PMID: 28164998 PMCID: PMC5292681 DOI: 10.1038/srep41731
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Conversion from orthogonal azimuthal amplitude distributions to a topological charge.
(a) and (d) are the amplitude and phase distributions of the mode A|cos(. (b) and (e) are those of the mode A|sin(. (c) and (f) are those of the modes with OAM. The azimuthal mode number l is 2. The amplitudes are normalized by their maximum values and the coordinates are normalized by μr. The phases are measured by rad. It shows that a photon with OAM can be constructed from modes without OAM via the coherent interference.