In this, the second of two papers, we derive general quantum formulas for the photodetachment cross section for H− in perpendicular electric and magnetic fields. The results are valid for any polarization and can be reduced to the semiclassical results of the first paper [A. D. Peters and J. B. Delos, Phys. Rev. A 47, 3020 (1993)]: a smooth background plus oscillatory terms. This connection between the quantum and semiclassical results is made using a stationary-phase approximation and it is shown that each stationary-phase point corresponds to a closed orbit
Using a simple analytic formula from closed-orbit theory, we calculate photoabsorption cross section...
Closed orbit theory is generalized to the semiclassical calculation of cross-correlated recurrence f...
In a previous paper [Schleif and Delos, Phys. Rev. A 76, 013404 (2007)] we described the spectrum of...
In this, the first of two papers, we obtain a simple analytic formula for the photodetachment cross ...
In this paper we obtain a simple analytic formula for the photodetachment cross section of H− in par...
A formula for photoabsorption cross sections of hydrogen and alkali-metal atoms in a static electric...
The S-matrix theory formulation of closed-orbit theory recently proposed by Granger and Greene is ex...
A simple analytic formula for the photodetachment cross section of H$\sp{-}$ in perpendicular electr...
Total quantum mechanical cross sections for photodetachment of H- in parallel E and B fields are exa...
We examine photodetachment of H− in parallel electric and magnetic fields, hν+H−→H+e− using semiclas...
We present a detailed quantum mechanical treatment of the photodetachment of H- by a short laser pul...
We present a detailed quantum mechanical treatment of the photodetachment of H$^{-}$ by a short lase...
In the preceding paper, we showed that the semiclassical approximation diverges at a bifurcation, an...
Bifurcations or related topics in two quantum systems are studied. The first system is a hydrogen i...
The photodetachement of H- in a quantum well is investigated based on closed orbit theory. It is fou...
Using a simple analytic formula from closed-orbit theory, we calculate photoabsorption cross section...
Closed orbit theory is generalized to the semiclassical calculation of cross-correlated recurrence f...
In a previous paper [Schleif and Delos, Phys. Rev. A 76, 013404 (2007)] we described the spectrum of...
In this, the first of two papers, we obtain a simple analytic formula for the photodetachment cross ...
In this paper we obtain a simple analytic formula for the photodetachment cross section of H− in par...
A formula for photoabsorption cross sections of hydrogen and alkali-metal atoms in a static electric...
The S-matrix theory formulation of closed-orbit theory recently proposed by Granger and Greene is ex...
A simple analytic formula for the photodetachment cross section of H$\sp{-}$ in perpendicular electr...
Total quantum mechanical cross sections for photodetachment of H- in parallel E and B fields are exa...
We examine photodetachment of H− in parallel electric and magnetic fields, hν+H−→H+e− using semiclas...
We present a detailed quantum mechanical treatment of the photodetachment of H- by a short laser pul...
We present a detailed quantum mechanical treatment of the photodetachment of H$^{-}$ by a short lase...
In the preceding paper, we showed that the semiclassical approximation diverges at a bifurcation, an...
Bifurcations or related topics in two quantum systems are studied. The first system is a hydrogen i...
The photodetachement of H- in a quantum well is investigated based on closed orbit theory. It is fou...
Using a simple analytic formula from closed-orbit theory, we calculate photoabsorption cross section...
Closed orbit theory is generalized to the semiclassical calculation of cross-correlated recurrence f...
In a previous paper [Schleif and Delos, Phys. Rev. A 76, 013404 (2007)] we described the spectrum of...