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Coexistence of type-I and type-II superconductivity signatures in ZrB12 probed by muon spin rotation measurements

Biswas, P. K. (author)
Rybakov, Filipp N. (author)
KTH,Kondenserade materiens teori
Singh, R. P. (author)
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Mukherjee, Saumya (author)
Parzyk, N. (author)
Balakrishnan, G. (author)
Lees, M. R. (author)
Dewhurst, C. D. (author)
Babaev, Egor (author)
KTH,Fysik
Hillier, A. D. (author)
Paul, D. Mc K. (author)
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 (creator_code:org_t)
AMER PHYSICAL SOC, 2020
2020
English.
In: Physical Review B. - : AMER PHYSICAL SOC. - 2469-9950 .- 2469-9969. ; 102:14
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Superconductors usually display either type-I or type-II superconductivity and the coexistence of these two types in the same material, for example, at different temperatures, is rare in nature. We employed the muon spin rotation (mu SR) technique to unveil the superconducting phase diagram of the dodecaboride ZrB12 and obtained clear evidence of both type-I and type-II characteristics. Most important, we found a region showing unusual behavior where the usually mutually exclusive mu SR signatures of type-I and type-II superconductivity coexist. We reproduced that behavior in theoretical modeling that required taking into account multiple bands and multiple coherence lengths, which suggests that material has one coherence length larger and another smaller than the magnetic field penetration length (the type-1.5 regime). At stronger fields, a footprint of the type-II mixed state showing square flux-line lattice was also obtained using neutron diffraction.

Subject headings

NATURVETENSKAP  -- Fysik -- Den kondenserade materiens fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Condensed Matter Physics (hsv//eng)

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