Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session P70: Metals: Magnetism, Semi-metals and Topology
2:30 PM–5:30 PM,
Wednesday, March 4, 2020
Room: 208
Sponsoring
Units:
DCMP DMP
Abstract: P70.00002 : Investigation of the universal scattering rate in PdCrO2 by high energy electron irradiation*
Presenter:
Elina Zhakina
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
Authors:
Elina Zhakina
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
Philippa McGuinness
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
Veronika Sunko
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
Marcin Konczykowski
(Ecole Polytechnique, Palaiseau, France)
Seunghyun Khim
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
Markus Koenig
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
Andrew Mackenzie
(Max Planck Institute for Chemical Physics of Solids, Dresden, Germany)
The resistivity of PdCrO2 exhibits a T-linear dependence between 150 K and 300 K. In the region of the T-linear resistivity, the scattering rate per kelvin is well approximated by the ratio kB/h. A number of other materials reveal similar results, in spite of large differences in the microscopic origins of the scattering [1].
To investigate the universal behaviour of the scattering rate, we conducted a study of the influence of point defects on the resistivity of PdCrO2, the results of which we report here. We introduced point defects to FIB microstructures of PdCrO2 by irradiating them with high-energy electrons. Comparing the results with those on PdCoO2, we confirm that the increase in the resistivity is dominated by defects in Pd layers. Matthiessen's rule is obeyed in the T-linear region, indicating that the inelastic scattering events could be considered independent from the elastic ones.
[1] J. A. N. Bruin, Science Vol. 339, pp. 804-807
*Max Planck society. PM and VS thank EPSRC for PhD studentship funding through grant number EP/L015110/1. The irradiation was supported by EMIR network.
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