Electron-polaron--electron-polaron bound states in mass-gap graphene-like planar quantum electrodynamics: -wave bipolarons
arXiv:1704.01044 · doi:10.1140/epjb/e2018-90252-0
Abstract
A Lorentz invariant version of a mass-gap graphene-like planar quantum electrodynamics, the parity-preserving massive QED, exhibits attractive interaction in low-energy electron-polaron--electron-polaron -wave scattering, favoring quasiparticles bound states, the -wave bipolarons.
6 pages, two figures, references added
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Cited by in corpus (10)
- New point-like sources and a conducting surface in Maxwell-Chern-Simons electrodynamics
- On the electron-polaron--electron-polaron scattering and Landau levels in pristine graphene-like quantum electrodynamics
- The quantum scale invariance in graphene-like quantum electrodynamics
- Quantum parity conservation in planar quantum electrodynamics
- Quantum Charged Spinning Massless Particles in 2+1 dimensions
- On the two-dimensional Schrödinger operator with an attractive potential of the Bessel-Macdonald type
- On the ultraviolet finiteness of parity-preserving massive QED
- Vortices in a parity-invariant Maxwell-Chern-Simons model
- Self-dual Maxwell-Chern-Simons solitons in a parity-invariant scenario
- The spectrum consistency of fractional quantum Hall effect model