Fermi surface and light quasi particles in hourglass nodal chain metal eta-ReO2

Abstract

Quantum oscillations in magnetic torque and electrical resistivity were measured to investigate the electronic structure of eta-ReO2, a candidate hourglass nodal chain metal (Dirac loop chain metal). All the de Haas-van Alphen oscillation branches measured at 30 mK in magnetic fields of up to 17.5 T were consistent with first-principles calculations predicting four Fermi surfaces (FSs). The small-electron FS of the four FSs exhibited a very small cyclotron mass, 0.059 times that of the free electrons, which is likely to be related to the linear dispersion of the energy band. The consistency between the quantum oscillation results and band calculations indicates the presence of the hourglass nodal chain predicted for eta-ReO2 in the vicinity of the Fermi energy.

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