Analysis of a soft-x-ray laser with charge-exchange excitation

William H. Louisell, Marlan O. Scully, and William B. McKnight
Phys. Rev. A 11, 989 – Published 1 March 1975
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Abstract

A soft-x-ray laser utilizing electron pickup by a stripped nucleus is proposed. A particular example using electron exchange between hydrogen and an α particle is analyzed and is shown to produce inversion between the He2p+ and He1s+ levels giving stimulated emission at 304 Å. In this scheme the α particles are swept along the target at the speed of light. The cross sections involved in the electron pickup in a hydrogen target and subsequent collisional deexcitation are analyzed to ascertain the optimum target thickness for population inversion. Also the effects of atomic collisions on the stimulated-emission cross section are estimated (Doppler broadening). The dynamics of the beam including focusing and space-charge effects are discussed. The stimulated-emission cross sections for a gas and a solid thin-film target are calculated. For a 30-mA α-particle current and a 10-cm lasing length, we estimate gains of 1.1 and 50, respectively.

  • Received 9 February 1973

DOI:https://doi.org/10.1103/PhysRevA.11.989

©1975 American Physical Society

Authors & Affiliations

William H. Louisell* and Marlan O. Scully

  • Department of Physics and Optical Sciences Center, University of Arizona, Tucson, Arizona 85721

William B. McKnight

  • Missile Research, Development and Engineering Laboratory, U.S. Army Missile Command, Redstone Arsenal, Alabama 35809

  • *Permanent address: Dept. of Physics and Electrical Engineering, University of Southern California, Los Angeles, Calif. 90007.
  • Alfred P. Sloan Fellow.
  • Present address: Dept. of Physics, University of Alabama, Huntsville, Ala. 35807.

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Issue

Vol. 11, Iss. 3 — March 1975

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