Pseudo-gap in RuGa3: A microscopic point of view

We report a detailed study of the nature of the RuGa3 in-gap states by means of precision microscopic methods: nuclear quadrupole resonance (NQR), nuclear magnetic resonance (NMR), and pump-probe spectroscopy. We observe a pronounced splitting of 69Ga nuclear spin-lattice relaxation curves below ∼40 K and between 70 and 145 K, although the corresponding NQR lines remain narrow over the entire temperature range under study. The slow relaxing component behaves like a typical phonon-induced relaxation way, while the fast relaxing one demonstrates signatures of paramagnetic (below ∼40 K) and activation (between 70 and 145 K) mechanisms. Moreover, additional Ga’ and Ga’’ positions with anomalously low electric field gradient were revealed for the first time for IrIn3-type structure gallides, which stay almost unchanged, at least up to 77 K. The observed microscopic features are accompanied with in-gap states saturation or depleting, which is seen as the resistivity mechanism crossover at ∼180 K and electron localization below 145 K evidenced by pump-probe spectroscopy. Based on our experimental results, we associate this pseudo-gap like behavior with inhomogeneously distributed electronic density defects, which manifest at both micro- (nuclear spin and phonon dynamics) and macroscale (bulk transport properties such as resistivity). © 2022 Elsevier B.V.

Authors
Gippius A.A. , Tkachev A.V. , Zhurenko S.V. , Gunbin A.V. , Demikhov E.I. , Kuo C.-N. , Lue C.-S. , Nguyen N.-Q. , Luo C.-W. , Khrustalev V.N. , Svetogorov R.D. , Likhanov M.S. , Shevelkov A.V.
Publisher
Elsevier Ltd
Language
English
Status
Published
Number
168522
Volume
938
Year
2023
Organizations
  • 1 M.V. Lomonosov Moscow State University, Moscow, 119991, Russian Federation
  • 2 P.N. Lebedev Physics Institute, Moscow, 119991, Russian Federation
  • 3 Department of Physics, National Cheng Kung University, Tainan, 70101, Taiwan
  • 4 Taiwan Consortium of Emergent Crystalline Materials, National Science and Technology Council, Taipei, 10601, Taiwan
  • 5 Department of Electrophysics, National Yang Ming Chiao Tung University, Hsinchu, Taiwan
  • 6 Peoples’ Friendship University of Russia (RUDN University), Moscow, Russian Federation
  • 7 Zelinsky Institute of Organic Chemistry of RAS, Moscow, Russian Federation
  • 8 National Research Center “Kurchatov Institute”, Moscow, Russian Federation
Keywords
In-gap states; Intermetallics; NMR; NQR; Pseudo-gap; Pump-probe spectroscopy

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