Hybridization of Spin and Plasma Waves in Josephson Tunnel Junctions Containing a Ferromagnetic Layer
Abstract
We study dynamics of tunnel Josephson junctions with a thin ferromagnetic layer F [superconductor-insulator-ferromagnet-superconductor (SIFS) junctions]. On the basis of derived equations relating the superconducting phase and magnetic moment to each other we analyze collective excitations in the system and find a new mode which is a hybrid of plasmalike and spin waves. The latter are coupled together in a broad range of parameters characterizing the system. Using the solution describing the collective modes we demonstrate that besides the Fiske steps new peaks appear on the I-V characteristics due to oscillations of the magnetic moment M in the ferromagnetic layer. Thus, by measuring the I-V curve of the SIFS junctions, one can extract information about the spectrum of spin excitations in the ferromagnet F.
- Publication:
-
Physical Review Letters
- Pub Date:
- July 2009
- DOI:
- Bibcode:
- 2009PhRvL.103c7003V
- Keywords:
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- 74.20.Rp;
- 03.65.Yz;
- 74.50.+r;
- 75.70.-i;
- Pairing symmetries;
- Decoherence;
- open systems;
- quantum statistical methods;
- Tunneling phenomena;
- point contacts weak links Josephson effects;
- Magnetic properties of thin films surfaces and interfaces