Electronic Structure and Magnetic Character of Antiferromagnetic Compound NpPt<sub>2</sub>In<sub>7</sub>
ORAL
Abstract
A very important class of materials, the AnMmIn3n+2m family, where M is a group 9 transition metal and A=Ce, U, Np or Pu, offers to explore the relationship between unconventional superconductivity and magnetism. In this work, we present a theoretical study of a Np-based member of this family, an antiferromagnetic compound NpPt2In7, analogue of heavy-fermion superconductor under pressure CePt2In7. We focus on its electronic structure and determine computationally the magnetic character. Calculations were performed in the framework of the relativistic density functional theory (including the spin-orbit coupling) plus Coulomb-U (DFT+SOC+U) using a full-potential linearized augmented plane-wave (FP-LAPW) basis. DFT(+SOC) yields the correct antiferromagnetic (AF) ordering, but fails to reproduce the experimentally observable 2.53 µB magnetic moment on Np. The correlated method DFT+SOC+U(AMF) improves the Np-atom magnetic moment over DFT. Also, the calculations produce the AF ground state in agreement with experiment. It indicates fairly localized character of the Np-f-shell in NpPt2In7.
*This work was supported by the National Science Centre (Poland) grant No. DEC-2015/17/N/ST3/03790.
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Presenters
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Agnieszka Kozub
- Faculty of Applied Physics and Mathematics, Gdansk University of Technology