Rydberg atoms in uniform magnetic fields: Uncovering the transition from regularity to irregularity in a quantum system

G. Wunner, U. Woelk, I. Zech, G. Zeller, T. Ertl, F. Geyer, W. Schweitzer, and H. Ruder
Phys. Rev. Lett. 57, 3261 – Published 29 December 1986
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Abstract

We investigate the eigenvalue spectra of hydrogen Rydberg atoms in strong magnetic fields for manifestations of quantum stochasticity and find (i) a smooth transition from a Poisson-type to a Wigner-type distribution of level spacings in the range of energy where classical motion becomes increasingly chaotic, (ii) the occurrence of multiple avoided crossings, and (iii) connected with this, an extreme sensitivity of oscillator strengths, and thus of observable spectra, with respect to small variations of an external parameter, viz., the magnetic field strength.

  • Received 7 August 1986

DOI:https://doi.org/10.1103/PhysRevLett.57.3261

©1986 American Physical Society

Authors & Affiliations

G. Wunner, U. Woelk, I. Zech, G. Zeller, T. Ertl, F. Geyer, W. Schweitzer, and H. Ruder

  • Lehrstuhl für Theoretische Astrophysik, Universitat Tübingen, D-7400 Tübingen, Federal Republic of Germany

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Issue

Vol. 57, Iss. 26 — 29 December 1986

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