Multiband transport and nonmetallic low-temperature state of K0.50Na0.24Fe1.52Se2
Multiband transport and nonmetallic low-temperature state of K0.50Na0.24Fe1.52Se2
Ryu, H.; Wolff-Fabris, F.; Warren, J. B.; Uhlarz, M.; Wosnitza, J.; Petrovic, C.
We report evidence for multiband transport and an insulating low-temperature normal state in superconducting K0.50Na0.24Fe1.52Se2 with Tc approximate to 20 K. The temperature-dependent upper critical field Hc2 is well described by a two-band BCS model. The normal-state resistance, accessible at low temperatures only in pulsed magnetic fields, shows an insulating logarithmic temperature dependence as T -> 0 after superconductivity is suppressed. This is similar as for high-Tc copper oxides and granular type-I superconductors, suggesting that the superconductor-insulator transition observed in high magnetic fields is related to intrinsic nanoscale phase separation.
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Physical Review B 90(2014), 020502(R)
DOI: 10.1103/PhysRevB.90.020502
ISSN: 1098-0121
Cited 1 times in Scopus
Permalink: https://www.hzdr.de/publications/Publ-20750
Publ.-Id: 20750