Role of infrared divergences in the 1/N expansion of the U=∞ Anderson model
- 10 May 1985
- journal article
- Published by IOP Publishing in Journal of Physics C: Solid State Physics
- Vol. 18 (13) , 2651-2665
- https://doi.org/10.1088/0022-3719/18/13/012
Abstract
The 1/N corrections to the large-N limit of the U= infinity Anderson model are evaluated as gaussian fluctuations about the mean-field theory of previous work, in terms of the complex sigma -field (Coleman boson). The results at T=0 for the magnetic susceptibility chi 0 and the f occupation nf are in agreement with those of Rasul and Hewson (1983-4). The result for the linear coefficient of the specific heat gamma is in agreement with an exact relation due to Yoshimori to O(1/N). Fluctuations in the phase of the order parameter Delta produce infrared divergences which force it to vanish as, Delta / Delta 0 varies as Lambda alpha , as the infrared cut off Lambda to 0, with alpha =nf2/N, restoring the symmetry which was broken in nf+b+b, consistent with this interpretation. The same results for nf, chi 0 and gamma are also obtained in polar coordinates for the sigma -field and in the gauge used in the previous work.Keywords
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