什么是Werthamer-Helfand-Hohenberg商的近似数教学反思估计?

【图文】Fe(SeTe)单晶中出现起始转变温度为14.6K的超导电性_百度文库
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Fe(SeTe)单晶中出现起始转变温度为14.6K的超导电性
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&&F​e​(​S​e​T​e​)​单​晶​中​出​现​起​始​转​变​温​度​为4​.K​的​超​导​电​性
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Superconducting Properties of NdO0.5F0.5BiS2 Single CrystalsQian ChenMahmoud Abdel-HafiezXiao-Jia ChenZhixuan ShenYihao WangChunmu FengZhu’an XuOriginal PaperDOI:
10.-016-3436-zCite this article as: Chen, Q., Abdel-Hafiez, M., Chen, XJ. et al. J Supercond Nov Magn (13. doi:10.-016-3436-z
We report on superconducting properties of high-quality single crystals of F-substituted NdOBiS2 using low-temperature magnetization and transport measurements. Using the mixture of CsCl and KCl as the flux, we have synthesized our single crystals. This compound exhibits bulk superconductivity with a transition temperature of about Tc~4.6 K. The critical current density Jc as a function of temperature has been derived and decreases with the increasing temperature. We construct the phase diagram Hc2(T). The zero-temperature value for \(H_{\mathrm {c2}}^{B\parallel c}\) for value for \(T_{c}^{90~\%}\) and \(T_{c}^{0~\%}\) is estimated to be approximately 2.17 and 1.72 T respectively by using Werthamer-Helfand-Hohenberg model.BiS2-based superconductorsElectrical transportMagnetizationPairing symmetry1.Mizuguchi, Y., Fujihisa, H., Gotoh, Y., Suzuki, K., Usui, H., Kuroki, K., Demura, S., Takano, Y., Izawa, H., Miura, O.: Phys. Rev. B 86, 12)2.Singh, S.K., Kumar, A., Gahtori, B., Sharma, G., Patnaik, S., Awana, V.P.S.: J. Am. Chem. Soc. 134, 1)3.Mizuguchi, Y., Demura, S., Deguchi, K., Takano, Y., Fujihisa, H., Gotoh, Y., Izawa, H., Miura, O.: J. Phys. Soc. Jpn. 81, 12)4.Xing, J., Li, S., Ding, X., Yang, H., Wen, H.-H.: Phys. Rev. B 86, 12)5.Demura, S., Mizuguchi, Y., Deguchi, K., Okazaki, H., Hara, H., Watanabe, T., James Denholme, S., Fujioka, M., Ozaki, T., Fujihisa, H., Gotoh, Y., Miura, O., Yamaguchi, T., Takeya, H., Takano, Y.: J. Phys. Soc. Jpn. 82, 13)6.Yazici, D., Huang, K., White, B.D., Chang, A.H., Friedman, A.J., Maple, M.B.: Phil. Mag. 93, 673 (2013)7.Awana, V.P.S., Kumar, A., Jha, R., Singh, S.K., Pal, A., Shruti, K., Saha, J., Patnaik, S.: Solid State Commun. 157, 21 (2013)8.Tomita, T., Ebata, M., Soeda, H., Takahashi, H., Fujihisa, H., Gotoh, Y., Mizuguchi, Y., Izawa, H., Miura, O., Demura, S., Deguchi, K., Takano, Y.: J. Phys. Soc. Jpn. 83, 14)9.Wolowiec, C.T., Yazici, D., White, B.D., Huang, K., Maple, M.B.: Phys. Rev. B 88, 13)10.Jha, R., Tiwari, B., Awana, V.P.S.: J. Appl. Phys. 117, 15)11.Luo, Y., Zhai, H.-F., Zhang, P., Xu, Z.-A., Cao, G.-H., Thompson, J.D.: Phys. Rev. B 90, 14)12.Yildirim, T.: Phys. Rev. B 87, 13)13.Zhai, H.-F., et al.: Phys. Rev. B 90, 14)14.Zhang, P, Zhai, H.-F., Cao, G., Xu, Z.: Bull. Am. Phys. Soc. 60 (2015)15.Yang, Y., Wang, W., Xiang, Y., Li, Z., Wang, Q.: Phys. Rev. B 88, 9)16.Wu, X.X., Yuan, J., Liang, Y., Fan, H., Hu, J.P.: Euro- Phys. Lett. 108, 14)17.Liang, Y., Wu, X., Tsai, W.-F., Hu, J.: Front. Phys. 9, 194–199 (2014)18.Martins, G.B., Moreo, A., Dagotto, E.: Phys. Rev. B 87, 13)19.Shruti, K., Srivastava, P., Patnaik, S.: J. Phys.:Condens. Matter. 25, 13)20.Abdel-Hafiez, M., Ge, J., Vasiliev, A.N., Chareev, D.A., Van de Vondel, J., Moshchalkov, V.V., Silhanek, A.V.: Phys. Rev. B 88, 13)21.Abdel-Hafiez, M., et al.: Phys. Rev. B 90, 14)22.Jiao, L., Weng, Z., Liu, J., Zhang, J., Pang, G., Guo, C., Gao, F., Zhu, X., Wen, H.-H., Yuan, H.Q.: J. Phys.:Condens. Matter 27, 15)23.Liu, J., Fang, D., Wang, Z., Xing, J., Du, Z., Zhu, X., Yang, H., Wen, H.-H.: Europhys. Lett. 106, 6)24.Masanori, N., et al.: Solid State Commun. 178, 33–36 (2014)25.Nagao, M., et al.: J. Phys. Soc. Jpn. 82, 13)26.Bean, C.P.: Phys. Rev. Lett. 8, 250–253 (1962)Qian Chen1Mahmoud Abdel-Hafiez2Xiao-Jia Chen2Zhixuan Shen1Yihao Wang1Chunmu Feng1Zhu’an Xu131.Department of Physics and State Key Laboratory of Silicon MaterialsZhejiang UniversityHangzhouChina2.Center for High Pressure Science and Technology Advanced ResearchShanghaiChina3.Zhejiang California International NanoSystems InstituteZhejiang UniversityHangzhouPeople’s Republic of China
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