Supersymmetric Quantum Mechanics on a noncommutative plane through the lens of deformation quantization
Abstract
A gauge invariant mathematical formalism based on deformation quantization is outlined to model an supersymmetric system of a spin charged particle placed in a nocommutative plane under the influence of a vertical uniform magnetic field. The noncommutative involutive algebra of formal power series in with coefficients in the commutative ring was employed to construct the relevant observables, viz., SUSY Hamiltonian , supercharge operator and its adjoint all belonging to the matrix algebra with the help of a family of gauge-equivalent star products . The energy eigenvalues of the SUSY Hamiltonian all turned out to be independent of not only the gauge parameter but also the noncommutativity parameter . The nontrivial Fermionic ground state was subsequently computed associated with the zero energy which indicates that supersymmetry remains unbroken in all orders of . The Witten index for the noncommutative SUSY Landau problem turns out to be corroborating the fact that there is no broken supersymmetry for the model we are considering.
Keywords
Cite
@article{arxiv.2405.02239,
title = {Supersymmetric Quantum Mechanics on a noncommutative plane through the lens of deformation quantization},
author = {Md. Rafsanjany Jim and S. Hasibul Hassan Chowdhury},
journal= {arXiv preprint arXiv:2405.02239},
year = {2024}
}
Comments
33 pages, no figure, typos corrected, published version