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Coexistence of metallic and nonmetallic properties in the pyrochlore Lu$_2$Rh$_2$O$_7$

Authors :
Hallas, Alannah M.
Sharma, Arzoo Z.
Mauws, Cole
Chen, Qiang
Zhou, Haidong D.
Ding, Cui
Gong, Zizhou
Tachibana, Makoto
Sarte, Paul M.
Attfield, J. Paul
Luke, Graeme M.
Wiebe, Christopher R.
Source :
npj Quantum Materials, Volume 4, Article number: 9 (2019)
Publication Year :
2019

Abstract

Transition metal oxides of the $4d$ and $5d$ block have recently become the targets of materials discovery, largely due to their strong spin-orbit coupling that can generate exotic magnetic and electronic states. Here we report the high pressure synthesis of Lu$_2$Rh$_2$O$_7$, a new cubic pyrochlore oxide based on $4d^5$ Rh$^{4+}$ and characterizations via thermodynamic, electrical transport, and muon spin relaxation measurements. Magnetic susceptibility measurements reveal a large temperature-independent Pauli paramagnetic contribution, while heat capacity shows an enhanced Sommerfeld coefficient, $\gamma$ = 21.8(1) mJ/mol-Rh K$^2$. Muon spin relaxation measurements confirm that Lu$_2$Rh$_2$O$_7$ remains paramagnetic down to 2 K. Taken in combination, these three measurements suggest that Lu$_2$Rh$_2$O$_7$ is a correlated paramagnetic metal with a Wilson ratio of $R_W = 2.5$. However, electric transport measurements present a striking contradiction as the resistivity of Lu$_2$Rh$_2$O$_7$ is observed to monotonically increase with decreasing temperature, indicative of a nonmetallic state. Furthermore, although the magnitude of the resistivity is that of a semiconductor, the temperature dependence does not obey any conventional form. Thus, we propose that Lu$_2$Rh$_2$O$_7$ may belong to the same novel class of non-Fermi liquids as the nonmetallic metal FeCrAs.<br />Comment: 11 pages, 5 figures

Details

Database :
arXiv
Journal :
npj Quantum Materials, Volume 4, Article number: 9 (2019)
Publication Type :
Report
Accession number :
edsarx.1903.00399
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41535-019-0148-1