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Low-temperature suppression of the spin Nernst angle in Pt
T. Wimmer
, J. Gückelhorn
, S. Wimmer
, S. Mankovsky
, H. Ebert
, M. Opel
, S. Geprägs
,
R. Gross
, H. Huebl
, M. Althammer
Chair of Technical Physics
Walther-Meissner-Institut
Technical University of Munich
Physikalische Chemie
Munich Center for Quantum Science and Technology (MCQST)
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
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Keyphrases
Low Temperature
100%
Nernst
100%
Temperature Suppression
100%
Transverse Spin
42%
Magnetothermopower
42%
Temperature Effect
28%
Magnetization
28%
Spin Nernst Effect
28%
Plethora
14%
Thermoelectric Properties
14%
Iron Oxide
14%
Antiferromagnetism
14%
Extrinsic Contribution
14%
Spin Accumulation
14%
Ferromagnet
14%
Thermal Transport
14%
Transport Phenomena
14%
Spin Transport
14%
Ferromagnetic Structure
14%
Electrical Transport
14%
Ferrier
14%
Antiferromagnetic Insulator
14%
Interfacial Spins
14%
Magnon Transport
14%
Physics
Nernst-Ettingshausen Effect
100%
Transport Phenomena
50%
Temperature Dependence
50%
Conductance
50%
Chemistry
Nernst-Ettingshausen Effect
100%
Antiferromagnetic
50%
Transport Phenomena
50%
Material Science
Platinum
100%
Hematite
20%
Theoretical Calculation
20%
Transport Phenomena
20%