paper

Orbital Collapse in Exotic Atoms and Its Effect on Dynamics

arXiv:2412.18747

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 Schrödinger 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.

Orbital Collapse in Exotic Atoms and Its Effect on Dynamics · wovepaper