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Heat capacity of mesoscopically disordered superconductors: implications for MgB₂

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dc.contributor.author Gabovich, A.M.
dc.contributor.author Voitenko, A.I.
dc.contributor.author Mai Suan Li
dc.contributor.author Szymczak, H.
dc.date.accessioned 2018-01-13T18:53:59Z
dc.date.available 2018-01-13T18:53:59Z
dc.date.issued 2002
dc.identifier.citation Heat capacity of mesoscopically disordered superconductors: implications for MgB₂ / A.M. Gabovich, A.I. Voitenko, Mai Suan Li, H. Szymczak // Физика низких температур. — 2002. — Т. 28, № 11. — С. 1126-1137. — Бібліогр.: 105 назв. — англ. uk_UA
dc.identifier.issn 0132-6414
dc.identifier.other PACS: 74.20.-z, 74.25.Bt, 74.80.-g
dc.identifier.uri http://dspace.nbuv.gov.ua/handle/123456789/128718
dc.description.abstract The electronic specific heat C as a function of temperature T is calculated for a mesoscopically disordered s-wave superconductor treated as a spatial ensemble of domains with continuously varying superconducting properties. Each domain is characterized by a certain critical temperature Tc0 in the range [0,Tc] and is supposed to have a size L > x, where x is the coherence length. Specific calculations are performed for exponential and Gaussian distributions of Tc₀. For low T, the spatially averaged ‹C(T)› is proportional to T², whereas the anomaly at Tc is substantially smeared even for small dispersions. For narrow gap distributions there exists an intermediate T range, where the curve ‹C(T)› can be well approximated by an exponential Bardeen-Cooper-Schrieffer-like dependence with an effective gap smaller than the weak-coupling value. The results obtained successfully reproduce the salient features of the C(T) data for MgB₂, where a wide superconducting gap distribution has been observed previously in the tunneling, point-contact, photoemission and Raman spectra. The conclusion is reached that the multiple-gap behavior of superconducting MgB₂ is due to the spatial distribution of dissimilar domains. Intrinsic nonstoichiometry of the compound or possible electronic phase separation may be the origin of the mesoscopic inhomogeneities. The same model describes the low-T heat capacity of cuprates, although the sources of inhomogeneity are different from those in MgB₂. uk_UA
dc.description.sponsorship A. M. G. is grateful to the Mianowski Foundation for support of his visit to Warsaw University. M. S. L. was supported by the Polish agency KBN (Grant No 2P03B-146-18). uk_UA
dc.language.iso en uk_UA
dc.publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України uk_UA
dc.relation.ispartof Физика низких температур
dc.subject Свеpхпpоводимость, в том числе высокотемпеpатуpная uk_UA
dc.title Heat capacity of mesoscopically disordered superconductors: implications for MgB₂ uk_UA
dc.type Article uk_UA
dc.status published earlier uk_UA


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