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The hydrogen atom in an electric field: closed-orbit theory with bifurcating orbits

T Bartsch et al 2003 J. Phys. B: At. Mol. Opt. Phys. 36 1231-1254   doi: 10.1088/0953-4075/36/6/312  Help

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T Bartsch, J Main and G Wunner
Institut für Theoretische Physik 1, Universität Stuttgart, D-70550 Stuttgart, Germany
E-mail: bartsch@theo1.physik.uni-stuttgart.de

Abstract. Closed-orbit theory provides a general approach to the semiclassical description of photo-absorption spectra of arbitrary atoms in external fields, the simplest of which is the hydrogen atom in an electric field. Yet, despite its apparent simplicity, a semiclassical quantization of this system by means of closed-orbit theory has not been achieved so far. It is the aim of this paper to close that gap. We first present a detailed analytic study of the closed classical orbits and their bifurcations. We then derive a simple form of the uniform semiclassical approximation for the bifurcations that is suitable for an inclusion into a closed-orbit summation. By means of a generalized version of the semiclassical quantization by harmonic inversion, we succeed in calculating high-quality semiclassical spectra for the hydrogen atom in an electric field.

Print publication: Issue 6 (28 March 2003)
Received 20 December 2002
Published 4 March 2003

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