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Unconventional magnetization in the multiphase superconductor PdBi2

Wenjun Kuang, Ziyi Jiang, Lewis Powell, Sofiia Komrakova, Andre K. Geim, Irina V. Grigorieva

DOI 10.1103/kcd9-9175 · Physical Review B

T1

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Abstract

Unconventional superconductors have specific signatures in their magnetic properties, such as intrinsic magnetization at interfaces and around defects and fractional and multiquanta vortices, with much attention focused on heavy fermion and high-Tc superconductors. Here, we report the observation of highly anomalous magnetization in β-PdBi2, a layered superconductor previously shown to exhibit a magnetic-field-induced transition from s-wave to nodal p-wave superconductivity at a transition field H*∼0.1T(HC1<H*<HC2). This transition is driven by the coupling between spin-polarized electronic bands and the in-plane magnetic field. In the unconventional phase (above H*) we observe three striking features: strictly linear and nonhysteretic dc magnetization, a sharp drop in the ac susceptibility when the field is applied parallel to the ab plane, and a pronounced anisotropy in the magnetic response between parallel and perpendicular field orientations. We show that these features are directly correlated with the expected transition to the nodal p-wave state and propose that the unusual magnetization behavior can be explained by a transition from a conventional vortex lattice in the low-field s-wave phase to a domain structure corresponding to spatial phase separation into superconducting (p-wave) and normal domains above H*. Our work identifies experimental signatures of unconventional multiphase superconductivity, offering an insight into the magnetic-field response of nodal states.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
PdBi2

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4.5Pressure not reportedunknown
PdBi2

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4.5Pressure not reportedunknown
MgB2

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—Pressure not reportedunknown
FeSe

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—Pressure not reportedunknown
NbSe2

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—Pressure not reportedunknown

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