Noncommutativity in Maxwell-Chern-Simons-Matter Theory Simulates Pauli Magnetic Coupling
arXiv:hep-th/0407086 · doi:10.1142/S0217732305017494
Abstract
We study interactions between like charges in the noncommutative Maxwell-Chern-Simons electrodynamics {\it{minimally}} coupled to spinors or scalars. We demonstrate that the non-relativistic potential profiles, for only spatial noncommutativity, are nearly identical to the ones generated by a {\it{non-minimal}} Pauli magnetic coupling, originally introduced by Stern \cite{js}. Although the Pauli term has crucial roles in the context of physically relevant objects such as anyons and like-charge bound states (or "Cooper pairs"), its inception \cite{js} (see also \cite{others}) was ad-hoc and phenomenological in nature. On the other hand we recover similar results by extending the minimal model to the noncommutative plane, which has developed in to an important generalization to ordinary spacetime in recent years. No additional input is needed besides the noncommutativity parameter. We prove a novel result that for complex scalar matter sector, the bound states (or "Cooper pairs" can be generated {\it{only}} if the Maxwell-Chern-Simons-scalar theory is embedded in noncommutative spacetime. This is all the more interesting since the Chern-Simons term does not directly contribute a noncommutative correction term in the action.
Revised version, Title changed, No changes in maths. part and conclusions, To appear in Mod.Phys.Lett. A
Cited by in corpus (19)
- Topics in Noncommutative Geometry Inspired Physics
- Supersonic Velocities in Noncommutative Acoustic Black Holes
- Gravitational Aharonov-Bohm effect due to noncommutative BTZ black hole
- The entropy of the noncommutative acoustic black hole based on generalized uncertainty principle
- Noncommutative analogue Aharonov-Bohm effect and superresonance
- Time-dependent Aharonov-Bohm effect on the noncommutative space
- Seiberg-Witten map and quantum phase effects for neutral Dirac particle on noncommutatiave plane
- Non-relativistic electron-electron interaction in a Maxwell-Chern-Simons-Proca model endowed with a timelike Lorentz-violating background
- Noncommutative Geometry and Fluid Dynamics
- Probing the noncommutative effects of phase space in the time-dependent Aharonov-Bohm effect
- Hawking radiation and stability of the canonical acoustic black holes
- Noncommutative geometry induced by spin effects
- Higher derivative Chern-Simons extension in the noncommutative QED
- Stochastic motion in an expanding noncommutative fluid
- Modified metrics of acoustic black holes: A review
- Källén-Lehmann representation of noncommutative quantum electrodynamics
- Static potential in scalar QED with non-minimal coupling
- New aspects of quantization of Jackiw-Pi model: field-antifield formalism and noncommutativity
- Spinning Black Hole in a Fluid