Conditions for Time-Independence of N-level Systems under the Rotating Wave Approximation (RWA) and Dipole Selection Rules
Abstract
We analyze the time-dependence of N-level systems under the Rotating Wave Approximation and dipole selection rules. Such systems can be solved straightforwardly if the Hamiltonian can be transformed into a time-independent form. The conditions under which a unitary transformation can be used to render time-dependent Hamiltonians into a time-independent form, thereby making the solution, are examined. After case-by-case analysis of different four and five-level systems, we conclude that systems having only one odd or even parity level achieve time-independence. In contrast, the others must satisfy a condition of laser detuning to achieve time-independence.
Keywords
Cite
@article{arxiv.2503.21689,
title = {Conditions for Time-Independence of N-level Systems under the Rotating Wave Approximation (RWA) and Dipole Selection Rules},
author = {Phoenix M. M. Paing and Daniel F. V. James},
journal= {arXiv preprint arXiv:2503.21689},
year = {2025}
}
Comments
3 figures (8 subfigures), 5 pages, presented at Toronto Ultra Cold Atoms Network (TUCAN) conference