Cross-Relaxation in Spin Systems

N. Bloembergen, S. Shapiro, P. S. Pershan, and J. O. Artman
Phys. Rev. 114, 445 – Published 15 April 1959
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Abstract

The energy transfer between adjacent resonances in nuclear and electron spin systems is analyzed in terms of the overlap of line-shape functions. The procedure is an enlargement on the original proposal of Kronig and Bouwkamp, and consists of taking partial account of off-diagonal elements in the spin-spin interaction, which are omitted in Van Vleck's truncated Hamiltonian. If the frequency of these off-diagonal elements is sufficiently small, they give rise to an additional kind of spin-spin relaxation, observed by Gorter and co-workers. They are also responsible for cross-saturation effects in paramagnetic salts of the type observed by Townes and co-workers. A crucial experiment is described which can be explained by spin-spin interactions, but not by the assumption of a hot-phonon region. Implications of the cross-relaxation for the operation of solid state masers are discussed. Special consideration is given to magnetically dilute substances and inhomogeneously broadened lines. Paradoxically, the latter will usually still undergo a homogeneous steady-state saturation.

  • Received 20 November 1958

DOI:https://doi.org/10.1103/PhysRev.114.445

©1959 American Physical Society

Authors & Affiliations

N. Bloembergen, S. Shapiro, P. S. Pershan*, and J. O. Artman

  • Gordon McKay Laboratory, Harvard University, Cambridge, Massachusetts

  • *National Science Foundation Predoctoral Fellow.
  • Now at Applied Physics Laboratory, Johns Hopkins University, Silver Spring, Maryland.

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Issue

Vol. 114, Iss. 2 — April 1959

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