Magnetization induced by odd-frequency spin-triplet Cooper pairs in a Josephson junction with metallic trilayers
arXiv:1507.03763 · doi:10.1103/PhysRevB.92.024512
Abstract
We theoretically study the magnetization inside a normal metal induced in an s-wave superconductor/ferromagnetic metal/normal metal/ferromagnetic metal/s-wave superconductor (S/F1/N/F2/S) Josephson junction. Using quasiclassical Green's function method, we show that the magnetization becomes finite inside N. The origin of this magnetization is due to odd-frequency spin-triplet Cooper pairs formed by electrons of equal and opposite spins, which are induced by proximity effect in the S/F1/N/F2/S junction. We find that the magnetization M(d,q) in N can be decomposed into two parts, M(d,q)=MI(d)+MII(d,q), where q is the superconducting phase difference between two Ss and d is the thickness of N. MI(d) exists generally in S/F junctions, while MII(d,q) carries all q dependence and represents the fingerprint of phase coherence between two Ss in Josephson junctions. The q dependence thus allows us to control the magnetization in N by tuning q for a fixed d. We show that MI(d) weakly decreases with increasing d, while the q dependent magnetization MII(d,q) rapidly decays with d. Moreover, we find that the time-averaged magnetization <MII(d,q)> exhibits discontinuous peak at each resonance DC voltage Vn=nhw_S/2e(n: integer) when DC voltage V as well as AC voltage v_ac(t) with frequency w_S are both applied to the S/F1/N/F2/S junction. This is because MII(d,q) oscillates generally in time t (AC magnetization) with dq/dt=2e[V+v_ac(t)]/h and thus <MII(d,q)>=0, but can be converted into the time-independent DC magnetization for DC voltage at Vn. We also discuss that the magnetization induced in N can be measurably large in realistic systems. Therefore, the measurement of the induced magnetization serves as an alternative way to detect the phase coherence between two Ss in Josephson junctions. Our results also provide a basic concept for tunable magnetization in superconducting spintronics devices.
17 pages, 12 figures, to be published in Phys. Rev. B
References in corpus (27)
- Superconducting Spintronics
- A spin triplet supercurrent through the half-metallic ferromagnet CrO2
- Critical Current Oscillations in Strong Ferromagnetic Pi-Junctions
- Evidence for Triplet Superconductivity in a Superconductor-Ferromagnet Spin Valve
- Symmetries of Pairing Correlations in Superconductor-Ferromagnet Nanostructures
- Half-integer Shapiro steps at the 0-pi crossover of a ferromagnetic Josephson junction
- Superconducting triplet spin valve
- 0-pi Josephson tunnel junctions with ferromagnetic barrier
- Triplet proximity effect in FSF trilayers
- Manifestation of the odd-frequency spin-triplet pairing state in diffusive ferromagnet / superconductor junctions
- Josephson effect due to the long-range odd-frequency triplet superconductivity in SFS junctions with Neel domain walls
- Josephson tunnel junctions with strong ferromagnetic interlayer
- Effect of an inhomogeneous exchange field on the proximity effect in disordered superconductor-ferromagnet hybrid structures
- Induced Triplet Pairing in clean s-wave Superconductor/Ferromagnet layered structures
- Static and dynamic properties of 0, pi, and 0-pi ferromagnetic tunnel Josephson Junctions
- Quantum limit of the triplet proximity effect in half-metal - superconductor junctions
- Odd triplet superconductivity in superconductor-ferromagnet structures with a narrow domain wall
- Controllable generation of a spin-triplet supercurrent in a Josephson spin-valve
- Josephson current and Andreev states in superconductor-half metal-superconductor heterostructures
- Theory of supercurrent transport in SIsFS Josephson junctions
- Spin Controlled Coexistence of 0 and π States in SFSFS Josephson Junctions
- Superconducting Spintronics with Magnetic Domain Walls
- Josephson Coupling and Fiske Dynamics in Ferromagnetic Tunnel Junctions
- Standard, inverse and triplet spin-valve effects in F1/S/F2 systems
- Ferromagnetic 0-pi Josephson junctions
- Proximity effect in superconductor/conical magnet/ferromagnet heterostructures
- 0- transition driven by magnetic proximity effect in a Josephson junction
Cited by in corpus (12)
- Odd-frequency superconductivity
- Half-Metallic Superconducting Triplet Spin MultiValves
- Induced Energy Gap in Finite-Sized Superconductor/Ferromagnet Hybrids
- Observation of the dominant spin-triplet supercurrent in Josephson spin valves with strong Ni ferromagnets
- Magnetization Reversal by Tuning Rashba Spin-Orbit Interaction and Josephson Phase in a Ferromagnetic Josephson Junction
- Anomalous Hall effect in semiconductor quantum wells in proximity to chiral p-wave superconductors
- Static and dynamic properties of Josephson weak links with singlet and triplet coupling
- Transport characterization of magnetic states in Superconductor/Ferromagnet Nb/Co multilayers
- In situ transport characterization of magnetic states in Nb/Co superconductor/ferromagnet heterostructures
- Perturbative Analysis of the Field-Free Josephson Diode Effect in a Multilayered Josephson Junction
- Spin Josephson diode effect induced by higher-harmonic spin Josephson currents in a diffusive Josephson junction
- Eight-fold classification of superconducting orders