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論文

Anisotropic spin-current spectroscopy of ferromagnetic superconducting gap symmetries

舟木 博志*; 山影 相*; 松尾 衛

Physical Review B, 107(18), p.184437_1 - 184437_10, 2023/05

 被引用回数:1 パーセンタイル:0(Materials Science, Multidisciplinary)

We develop a microscopic theory of tunneling spin transport at the magnetic interface between a ferromagnetic insulator (FI) and a ferromagnetic superconductor (FSC) driven by ferromagnetic resonance. We show that the spin susceptibilities of the FSC can be extracted from the spin currents by tuning the easy axis of the FI, and thus the spin currents can be a probe for the symmetries of the spin-triplet Cooper pairing. Our results will offer a route to exploiting the synergy of magnetism and superconductivities for spin devices.

論文

Acoustic spin transport by superconducting quasiparticles

船戸 匠*; 山影 相*; 松尾 衛

Physical Review B, 106(21), p.214420_1 - 214420_7, 2022/12

 被引用回数:1 パーセンタイル:17.38(Materials Science, Multidisciplinary)

We theoretically study the generation of spin current due to a surface acoustic wave (SAW) in a superconductor. We model an $$s$$-wave superconductor as the mean-field Hamiltonian and calculate spin current generated via spin-vorticity coupling based on quantum kinetic theory. The results suggest that the spin current can be driven in a single-superconductor layer, and our estimation suggests that the detectable magnitude of the spin current can be generated in aluminum. Our proposal may contribute to the advancement of spin transport in superconductors from application and fundamental physics aspects.

論文

Anisotropic superconducting spin transport at magnetic interfaces

大湊 友也*; 山影 相*; 松尾 衛

Physical Review B, 106(16), p.L161406_1 - L161406_6, 2022/10

 被引用回数:7 パーセンタイル:73.14(Materials Science, Multidisciplinary)

We present a theoretical investigation of anisotropic superconducting spin transport at a magnetic interface between a $$p$$-wave superconductor and a ferromagnetic insulator. Our formulation describes the ferromagnetic resonance modulations due to spin current generation depending on spin-triplet Cooper pair, including the frequency shift and enhanced Gilbert damping, in a unified manner. We find that the Cooper pair symmetry is detectable from the qualitative behavior of the ferromagnetic resonance modulation. Our theory paves the way toward anisotropic superconducting spintronics.

論文

Ferromagnetic resonance modulation in $$d$$-wave superconductor/ferromagnetic insulator bilayer systems

大湊 友也*; 山影 相*; 加藤 岳生*; 松尾 衛

Physical Review B, 105(20), p.205406_1 - 205406_7, 2022/05

 被引用回数:8 パーセンタイル:77.62(Materials Science, Multidisciplinary)

We investigate ferromagnetic resonance (FMR) modulation in $$d$$-wave superconductor (SC)/ferromagnetic insulator (FI) bilayer systems theoretically. The modulation of the Gilbert damping in these systems reflects the existence of nodes in the $$d$$-wave SC and shows power-law decay characteristics within the low-temperature and low-frequency limit. Our results indicate the effectiveness of the use of spin pumping as a probe technique to determine the symmetry of unconventional SCs with high sensitivity for nanoscale thin films.

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