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Antiferromagnetic Spin Seebeck Effect
- Wu, Stephen M;
- Zhang, Wei;
- Kc, Amit;
- Borisov, Pavel;
- Pearson, John E;
- Jiang, J Samuel;
- Lederman, David;
- Hoffmann, Axel;
- Bhattacharya, Anand
Published Web Location
https://doi.org/10.1103/physrevlett.116.097204Abstract
We report on the observation of the spin Seebeck effect in antiferromagnetic MnF_{2}. A device scale on-chip heater is deposited on a bilayer of MnF_{2} (110) (30 nm)/Pt (4 nm) grown by molecular beam epitaxy on a MgF_{2} (110) substrate. Using Pt as a spin detector layer, it is possible to measure the thermally generated spin current from MnF_{2} through the inverse spin Hall effect. The low temperature (2-80 K) and high magnetic field (up to 140 kOe) regime is explored. A clear spin-flop transition corresponding to the sudden rotation of antiferromagnetic spins out of the easy axis is observed in the spin Seebeck signal when large magnetic fields (>9 T) are applied parallel to the easy axis of the MnF_{2} thin film. When the magnetic field is applied perpendicular to the easy axis, the spin-flop transition is absent, as expected.
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