We consider a hybrid structure where a material with Rashba-like spin-orbit coupling is proximity coupled to a conventional superconductor. We find that the superconducting critical temperature Tc can be tuned by rotating the vector n characterizing the axis of broken inversion symmetry. This is explained by a leakage of s-wave singlet Cooper pairs out of the superconducting region, and by conversion of s-wave singlets into other types of correlations, among these s-wave odd-frequency pairs robust to impurity scattering. These results demonstrate a conceptually different way of tuning Tc compared to the previously studied variation of Tc in magnetic hybrids
The proximity effect from a spin-triplet p(x)-wave superconductor to a dirty normal-metal has been s...
We demonstrate theoretically all-electric control of the superconducting transition temperature usin...
We investigate ferromagnet/superconductor/ferromagnet (F/S/F) hybrid structures in the dirty limit, ...
We present a theoretical description and numerical simulations of the superconducting transition in ...
We investigate theoretically how the proximity effect in superconductor/ferromagnet hybrid structure...
Whereas considerable evidence exists for the conversion of singlet Cooper pairs into triplet Cooper ...
Inversion symmetry is a key symmetry in unconventional superconductors, and even its local breaking ...
Recent theoretical and experimental work has demonstrated how the superconducting critical temperatu...
We study superconductivity in spin-orbit-coupled systems in the vicinity of inversion symmetry break...
Interfacing superconductors with strongly spin-polarized magnetic materials opens the possibility to...
Interfacing superconductors with strongly spin-polarized magnetic materials opens the possibility to...
Superconducting spintronics in hybrid superconductor{ferromagnet (S{F) heterostructures provides an ...
Due to the lack of a net magnetization both at the interface and in the bulk, antiferromagnets with ...
Superconducting spintronics in hybrid superconductor/ferromagnet (S-F) heterostructures provides an ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present a theoretical stu...
The proximity effect from a spin-triplet p(x)-wave superconductor to a dirty normal-metal has been s...
We demonstrate theoretically all-electric control of the superconducting transition temperature usin...
We investigate ferromagnet/superconductor/ferromagnet (F/S/F) hybrid structures in the dirty limit, ...
We present a theoretical description and numerical simulations of the superconducting transition in ...
We investigate theoretically how the proximity effect in superconductor/ferromagnet hybrid structure...
Whereas considerable evidence exists for the conversion of singlet Cooper pairs into triplet Cooper ...
Inversion symmetry is a key symmetry in unconventional superconductors, and even its local breaking ...
Recent theoretical and experimental work has demonstrated how the superconducting critical temperatu...
We study superconductivity in spin-orbit-coupled systems in the vicinity of inversion symmetry break...
Interfacing superconductors with strongly spin-polarized magnetic materials opens the possibility to...
Interfacing superconductors with strongly spin-polarized magnetic materials opens the possibility to...
Superconducting spintronics in hybrid superconductor{ferromagnet (S{F) heterostructures provides an ...
Due to the lack of a net magnetization both at the interface and in the bulk, antiferromagnets with ...
Superconducting spintronics in hybrid superconductor/ferromagnet (S-F) heterostructures provides an ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present a theoretical stu...
The proximity effect from a spin-triplet p(x)-wave superconductor to a dirty normal-metal has been s...
We demonstrate theoretically all-electric control of the superconducting transition temperature usin...
We investigate ferromagnet/superconductor/ferromagnet (F/S/F) hybrid structures in the dirty limit, ...