Orbital Collapse in Exotic Atoms and Its Effect on Dynamics
Abstract
We study the energy structures of muonic Ar atoms and find the muon orbital collapses at a critical angular momentum using density-functional theory (DFT). The may provide an upper limit for the muon-captured states in muon-Ar collisions. We confirm the existence of this upper limit by calculating the state-specified capture probability using the time-dependent Schr\"odinger equation (TDSE) and a classical trajectory Monte Carlo (CTMC) methods with the single-active-particle approximation. Modifying the mapping between the classical binding energy and the principal quantum number led to a reasonable agreement in the state-specified muon capture probabilities obtained by the TDSE and CTMC methods. We also propose a simple method to estimate for exotic noble atoms from atomic model potentials. The estimated values agree with those calculated by DFT.
Keywords
Cite
@article{arxiv.2412.18747,
title = {Orbital Collapse in Exotic Atoms and Its Effect on Dynamics},
author = {X. M. Tong and K. Tokesi and D. Kato and T. Okumura and S. Okada and T. Azuma},
journal= {arXiv preprint arXiv:2412.18747},
year = {2024}
}