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Tytuł artykułu

Specific heat jump of two-band superconductor KFe2As2 using Ginzburg-Landau theory

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this study specific heat jump using two-gap Ginzburg-Landau (GL) theory has been calculated. In contrast to the previous approaches, we have taken into account intergradient order parameters interaction in the GL free energy functional. The thermodynamic magnetic field revealed nonlinear temperature dependence due to interband interaction between order parameters and their gradients. The calculations showed that the specific heat jump in two-order parameter superconductors was smaller than that of single-order parameter superconductors. It has been shown that such a model is in good agreement with experimental data for KFe2As2 superconductors.
Wydawca
Rocznik
Strony
465--469
Opis fizyczny
Bibliogr. 38 poz.
Twórcy
  • Computer Engineering Department and Center of Excellence of Superconductivity Research, Ankara University,Ankara, 06100, Turkey
  • Institute of Physics Azerbaijan National Academy of Sciences, Baku, Az1143, Azerbaijan
Bibliografia
  • [1] KAMIHARA Y., HIRAMATSU H., HIRANO M., KAWAMURA R., YANAGI H., KAMIYA T., HOSONO H., J. Am. Chem. Soc., 128 (2006), 10012.
  • [2] KAMIHARA Y., WATANABE T., HIRANO M., HOSONO H., J. Am. Chem. Soc., 130 (2008), 3296.
  • [3] REN Z.A., LU W., YANG J., Chinese Phys. Lett., 25 (2008), 2215.
  • [4] ROTTER M., TEGEL M., JOHRENDT D., Phys. Rev. Lett., 101 (2008), 107006.
  • [5] PROZOROV R., NI N., TANATAR M., KOGAN V.G., GORDON R.T., MARTIN E., BLOMBERG C., PROMMAPAN P., YAN J.Q., BUDKO S.L., CANFIELD P.C., Phys. Rev. B, 78 (2008), 224506.
  • [6] WANG X., LIU Q.Q., LV Y.X. et al., Solid State Commun., 148 (2008), 538.
  • [7] CHU C.V., LORENTZ B., Physica C, 469 (2009) 285.
  • [8] HSU F.-C., LUO J.-Y., YEH K.-W., CHEN T.-K., HUANG T.-W., WU P.M., LEE Y.-C., HUANG Y.-L., CHU Y.-Y., YAN D.-C., WU M.-K., Natl. Acad. Sci. USA, 105 (38) (2008), 14262.
  • [9] IVANOVSKII A.L., Phys.-Usp.+, 51 (2008), 1229.
  • [10] SADOVSKII M.V., Phys.-Usp.+, 51 (2008), 1201.
  • [11] REN Z.A., ZHAO Z.X., Adv. Mater., 21 (2009), 4584.
  • [12] HANAGURI T., NITAKA S., KUROKI K., TAKAGI H., Science, 328 (2010), 474.
  • [13] PUDALOV V.M., OMELYANOVSKII O.E., KHLYBOV E.P., SADAKOV A.V., ELTSEV Y.F., MITSEN K.V., IVANENKO O.M., PERVAKOV K.S., Phys.-Usp.+, 54 (2008), 648.
  • [14] KHASANOV R., EVTUSHINSKY D.V., Phys. Rev. Lett., 102 (2009) 187005.
  • [15] ASKERZADE I., Unconventional Superconductors: Anisotropy and Multiband Effects, in: HULL R., JAGADISH C., OSGOOD R.M., PARISI J., WANG Z.M., UCHIDA S. (Eds), Springer Series in Materials Science, Vol. 153, Springer-Verlag, 1st ed., 2012.
  • [16] BARZYKIN V., GORKOV L.P., Jetp Lett.+, 88 (2008), 131.
  • [17] DOLGOV O.V., MAZIN I.I., PARKER D., GOLUBOV A.A., Phys. Rev. B, 79 (2009), 060502(R).
  • [18] UMMARINO G.A., Phys. Rev. B, 83 (2011), 092508.
  • [19] BENFANTO L., CAPPELLUTTI E., CASTELLANI C., Phys. Rev. B, 80 (2009), 214522.
  • [20] ASKERZADE I.N., GENCER A., GUCLU N., Supercond. Sci. Tech., 15 (2) (2002), L13.
  • [21] ASKERZADE I.N., GENCER A., Solid State Commun., 123 (2002) 63.
  • [22] ASKERZADE I.N., Phys.-Usp.+, 49 (2006) 1003.
  • [23] ASKERZADE I.N., J. Korean Phys. Soc., 45 (2004), 475.
  • [24] ZHYTOMIRSKY M.E., DAO V.-H., Phys. Rev. B, 69 (2004), 054508.
  • [25] ASKERZADE I.N., J. Supercond. Nov. Magn., 26 (2013), 1903.
  • [26] KIHOU K., SAITO T., ISHIDA S., NAKAJIMA M., TOMIOKA Y., FUKAZAWA H., KOHORI Y., ITO T., UCHIDA S.-I., IYO A., LEE C.-H., EISAKI H., J. Phys. Soc. Jpn., 79 (2010), 124713.
  • [27] CHEN H., REN Y., QIU Y., WEI B., LIU R.H., WU G.,WU T., XIE Y.L. WANG, X.F., HUANG Q., CHEN X. H., EPL-Europhys. Lett., 85 (2009), 17006.
  • [28] SASMAL K., LV B., LORENZ B., GULOV A.M., CHEN F., XUE Y.Y., CHU C.W., Phys. Rev. Lett., 101 (2008). 1007007.
  • [29] SINGH D.J., Phys. Rev. B, 79 (2008), 094511.
  • [30] TERASHIMA T., KIMATA M., SATSUKAWA H., HARADA A., HAZAMA K., UJI S., SUZUKI H.S., MATSUMOTO T., MURATA K., J. Phys. Soc. Jpn, 78 (8) (2009), 083701.
  • [31] SATO T., FUNAMORI N., Phys. Rev. Lett., 102 (2009), 255502.
  • [32] ABDEL-HAFIEZ M., ASWARTHAM S., WURMEHL S., GRINENKO V., HESS C., DRECHSLER S.-L., JOHNSTON S., WOLTER A.U.B., B¨UCHNER B., ROSNER H., BOERI L., Phys. Rev. B, 85 (13) (2012), 134533.
  • [33] ABRIKOSOV A.A., Fundamentals of the Theory of Metals, North Holland, Amsterdam, 1985.
  • [34] ASKERZADE I.N., Mod. Phys. Lett. B, 17 (2003) 11.
  • [35] PALISTRANT M.E., USRU V.A., Zhurnal Esperimental’noı i Teoreticheskoı Fiziki, 131 (1) (2007), 59 (in Russian); PALISTRANT M.E., USRU V.A., J. Exp. Theor. Phys.+, 104 (2007), 51 (in English).
  • [36] BUDKO S.L., NI N., CANFIELD P.C., Phys. Rev. B, 79 (2009), 220516(R).
  • [37] MU G., ZHENG B., CHENG P., WANG Z.-S., FANG L., SHEN B., SHAN L., REN Z., WEN H.-H., Chinese Phys. Lett., 27 (2010), 037402.
  • [38] ZAANEN J., Phys. Rev. B, 80 (21) (2009), 212502.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-db7c0969-c213-46c5-bb22-fd4edae57bae
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