Enhanced DC Spin Pumping into a Fluctuating Ferromagnet near Tc
arXiv:1404.0768 · doi:10.1103/PhysRevB.89.174417
Abstract
A linear-response formulation of the dc spin pumping, i.e., a spin injection from a precessing ferromagnet into an adjacent spin sink, is developed in view of describing many-body effects caused by spin fluctuations in the spin sink. It is shown that, when an itinerant ferromagnet near Tc is used as the spin sink, the spin pumping is largely increased owing to the fluctuation enhancement of the spin conductance across the precessing ferromagnet/spin sink interface. As an example, the enhanced spin pumping from permalloy into nickel palladium alloy (Tc ~ 20K) is analyzed by means of a self-consistent renormalization scheme, and it is predicted that the enhancement can be as large as tenfold.
11pages, 7figures
References in corpus (6)
- Spin Seebeck insulator
- Observation of the Spin-Seebeck Effect in a Ferromagnetic Semiconductor
- Scaling behavior of the spin pumping effect in ferromagnet/platinum bilayers
- Spin Seebeck effect in antiferromagnets and compensated ferrimagnets
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Cited by in corpus (14)
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- Relaxation mechanism driven by spin angular momentum absorption throughout antiferromagnetic phase transition in NiFe surface oxides
- Ferromagnetic resonance modulation in -wave superconductor/ferromagnetic insulator bilayer systems
- Role of spin mixing conductance in determining thermal spin pumping near the ferromagnetic phase transition in EuO_{1-x} and La2NiMnO6
- Theory of spin transport through antiferromagnetic insulator
- Spin pumping as a generic probe for linear spin fluctuations: demonstration with ferromagnetic and antiferromagnetic orders, metallic and insulating electrical states
- Magnonic thermal transport using the quantum Boltzmann equation
- Cryogenic spin Seebeck effect
- Unified formulation of interfacial magnonic pumping from non-collinear magnets
- Spin Pumping from Permalloy into Uncompensated Antiferromagnetic Co doped Zinc Oxide
- Alternating Current-induced Interfacial Spin-transfer Torque