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Yaroslav Tserkovnyak
Researcher at University of California, Los Angeles
Publications - 317
Citations - 19658
Yaroslav Tserkovnyak is an academic researcher from University of California, Los Angeles. The author has contributed to research in topics: Spin-½ & Magnon. The author has an hindex of 56, co-authored 309 publications receiving 16217 citations. Previous affiliations of Yaroslav Tserkovnyak include Centre for Advanced Study at the Norwegian Academy of Science and Letters & Weizmann Institute of Science.
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Crossed Andreev reflection in quantum wires with strong spin-orbit interaction
TL;DR: In this article, a spin-to-charge readout of quantum correlations is proposed to detect the entanglement of electrons within a Cooper pair at low temperatures by the electric current cross correlations in the wires.
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Stabilization of the skyrmion crystal phase and transport in thin-film antiferromagnets
TL;DR: In this article, the stability and dynamics of the skyrmion lattice in antiferromagnetic thin films subjected to fieldlike torques such as, e.g., those induced by an electric current in CuMnAs and via the inverse spin-galvanic effect were investigated.
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Resistance noise in spin valves
TL;DR: In this article, the effect of electric and magnetic noise and dissipation in magnetoelectronic nanostructures is investigated. But the authors focus on the enhancement of magnetization damping due to spin pumping, which is directly connected to thermal spin current fluctuations.
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Self-stabilizing exchange-mediated spin transport
T. Schneider,T. Schneider,T. Schneider,Daniel Hill,Attila Kákay,Kilian Lenz,Jürgen Lindner,Jürgen Fassbender,Jürgen Fassbender,Pramey Upadhyaya,Yuxiang Liu,Kang L. Wang,Yaroslav Tserkovnyak,Ilya Krivorotov,Igor Barsukov +14 more
TL;DR: In this article, the long-range spin transport by spin textures coexists with spin waves, as well as a soliton-screened spin transport regime at high spin injection biases.
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Quantum-kinetic theory of spin-transfer torque and magnon-assisted transport in nanoscale magnetic junctions
TL;DR: In this article, the role of spin fluctuations in charge transport through a magnetic junction was investigated and a systematic understanding of the interplay of charge and spin dynamics in nanoscale magnetic junctions was developed.