Experimental nuclear quadrupole resonance and computational study of the structurally refined topological semimetal TaSb$_2$

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Fujii, T., Janson, O., Yasuoka, H., Rosner, H., Prots, Yu., Burkhardt, U., Schmidt, M., Baenitz, M.
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910372604149760
author Fujii, T.
Janson, O.
Yasuoka, H.
Rosner, H.
Prots, Yu.
Burkhardt, U.
Schmidt, M.
Baenitz, M.
author_facet Fujii, T.
Janson, O.
Yasuoka, H.
Rosner, H.
Prots, Yu.
Burkhardt, U.
Schmidt, M.
Baenitz, M.
contents The local electric field gradients and magnetic dynamics of TaSb$_2$ have been studied using $^{121}$Sb, $^{123}$Sb, and $^{181}$Ta nuclear quadrupole resonance (NQR) with density functional theory (DFT) calculations using XRD-determined crystal structures. By measuring all structurally expected thirteen NQR lines, the nuclear quadrupole coupling constant ($ν_Q$) and asymmetric parameter ($η$) for Ta, Sb(1), and Sb(2) sites were obtained. These values are all in good agreement with the presented DFT calculations. Principal axes of the electric field gradients was determined for a single-crystal sample by measuring the angular dependencies of NMR frequency under a weak magnetic field. The unusual temperature dependence of $η$(T) of Sb(2) hints at the suppressed thermal expansion along the $a$-axis. Spin lattice relaxation rate ($1/T_1T$) measurements reveal an activated-type behavior and an upturn below 30 K. Neither the low temperature upturn nor the high temperature activation type behaviors are reproduced by the calculated $1/T_1T$ based on the calculated density of states (DOS). On the other hand, the agreement between the calculated DOS and specific heat measurements indicates that the band renormalization is small. This fact indicates that TaSb$_2$ deviates from the simple semimetal scenario, and magnetic excitations are not captured by Fermi liquid theory.
format Preprint
id arxiv_https___arxiv_org_abs_2312_11007
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Experimental nuclear quadrupole resonance and computational study of the structurally refined topological semimetal TaSb$_2$
Fujii, T.
Janson, O.
Yasuoka, H.
Rosner, H.
Prots, Yu.
Burkhardt, U.
Schmidt, M.
Baenitz, M.
Strongly Correlated Electrons
Materials Science
The local electric field gradients and magnetic dynamics of TaSb$_2$ have been studied using $^{121}$Sb, $^{123}$Sb, and $^{181}$Ta nuclear quadrupole resonance (NQR) with density functional theory (DFT) calculations using XRD-determined crystal structures. By measuring all structurally expected thirteen NQR lines, the nuclear quadrupole coupling constant ($ν_Q$) and asymmetric parameter ($η$) for Ta, Sb(1), and Sb(2) sites were obtained. These values are all in good agreement with the presented DFT calculations. Principal axes of the electric field gradients was determined for a single-crystal sample by measuring the angular dependencies of NMR frequency under a weak magnetic field. The unusual temperature dependence of $η$(T) of Sb(2) hints at the suppressed thermal expansion along the $a$-axis. Spin lattice relaxation rate ($1/T_1T$) measurements reveal an activated-type behavior and an upturn below 30 K. Neither the low temperature upturn nor the high temperature activation type behaviors are reproduced by the calculated $1/T_1T$ based on the calculated density of states (DOS). On the other hand, the agreement between the calculated DOS and specific heat measurements indicates that the band renormalization is small. This fact indicates that TaSb$_2$ deviates from the simple semimetal scenario, and magnetic excitations are not captured by Fermi liquid theory.
title Experimental nuclear quadrupole resonance and computational study of the structurally refined topological semimetal TaSb$_2$
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2312.11007