Flux-grown single crystals of PuPt2In7 are characterized and found to be both non-superconducting and non-magnetic down to 2 K. The Sommerfeld specific heat coefficient of ∼250 mJ/mol K2 indicates heavy fermion behavior. We report the results of generalized gradient approximation (GGA)+U calculations of PuPt2In7 and as yet unsynthesized isovalent PuPt2Ga7. The strength of the c-f hybridization of PuPt2In7 is similar to the PuCoIn5 superconductor. The bare and f-weighted susceptibility within the constant-matrix-element approximation is calculated, showing a maximum along the qz direction at qx=qy=0.5. A similar and slightly stronger maximum is also found in the structurally related heavy-fermion materials PuCoGa5 and PuCoIn5. The absence of superconductivity in PuPt2In7 is examined based on the results of our calculations.
@article{arxiv.1207.5563,
title = {PuPt2In7: a computational and experimental investigation},
author = {H. B. Rhee and F. Ronning and J. -X. Zhu and E. D. Bauer and J. N. Mitchell and P. H. Tobash and B. L. Scott and J. D. Thompson and Yu Jiang and C. H. Booth and W. E. Pickett},
journal= {arXiv preprint arXiv:1207.5563},
year = {2012}
}