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Specific heat of the high-Tc oxide superconductors
Authors:R. A. Fisher   J. E. Gordon  N. E. Phillips
Affiliation:(1) Materials and Chemical Sciences Division, Lawrence Berkeley Laboratory, University of California, 94720 Berkeley, California;(2) Present address: Physics Department, Amherst College, 01002 Amherst, Massachusetts
Abstract:
We review the specific heat measurements on La2CuO4, La2–xMxCuO4 (M = Ca, Sr, and Ba), YBa2Cu3O7, and the Bi-Ca-Sr-Cu-O and Tl-Ca-Ba-Cu-O systems. Tables of properties derived from the data are presented. Results on RBa2Cu3O7 (R=rare earth elements other than Y) are summarized, as are results on YBa2(Cu3–xMx)O7 (M=Zn, Cr, Fe, or Ni). The difficulties of analyzing the specific heat data, and specifically the separation of the contributions associated with magnetic impurities, are discussed. It is tentatively concluded that the data nearTc are consistent with BCS theory, although they show evidence of fluctuation effects. It is also concluded that the low-temperature zero-field data on a majority of the high-Tc oxide superconductors provide evidence of anintrinsic term that is proportional toT, a result that is inconsistent with a gap in the electronic density of states.
Keywords:high-Tc superconductivity  specific heat
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