Angular Momentum of Supersymmetric Cold Rydberg Atoms
arXiv:0901.4832 · doi:10.1103/PhysRevLett.77.44
Abstract
Semiunitary transformation is applied to discuss supersymmetrization of cold Rydberg atoms. In the limit of vanishing kinetic energy the lowest angular momentum of the supersymmetric cold Rydberg atom is . A possible experimental verification is suggested.
11 pages, no figure
Cited by in corpus (11)
- Landau Quantization of Neutral Particles in an External Field
- Rydberg-Stark deceleration of atoms and molecules
- The Quantum Mechanics SUSY Algebra: An Introductory Review
- Coherent States of the Deformed Heisenberg-Weyl Algebra in Noncommutative Space
- Test of Quantum Effects of Spatial Noncommutativity using Modified Electron Momentum Spectroscopy
- Searching for Effects of Spatial Noncommutativity via Chern-Simons' Processes
- Induced Fractional Zero-Point Angular Momentum for Charged Particles of the Bohm-Aharonov System by means of a "Spectator" Magnetic Field
- Effects on the Non-Relativistic Dynamics of a Charged Particle Interacting with a Chern-Simons Potential
- Deformed "Commutative" Chern - Simons System
- Testing Spatial Noncommutativity via Magnetic Hyperfine Structure Induced by Fractional Angular Momentum of Rydberg System
- Statistical physics of flux-carrying Brownian particles