Using an atomistic tight-binding model, we investigate the characteristics of a Josephson junction formed by monolayers of MoS2 sandwiched between Pb superconducting electrodes. We derive and apply Green's function–based formulation to compute the Josephson current as well as the local density of states in the junction. Our analysis of diagonal and off-diagonal components of the local density of states reveals the presence of triplet superconducting correlations in the MoS2 monolayers and spin-polarized subgap (Andreev bound) states. Our formulation can be extended to other systems where atomistic details and large scales are needed to obtain accurate modeling of Josephson junction physics.Peer reviewe
We investigate the transport properties of a one-dimensional superconductor-normal metal-superconduc...
van der Waals (vdW) Josephson junctions can possibly accelerate the development of an advanced super...
This chapter is devoted to the study of controllable proximity effects in superconductors (S), in te...
When two superconductors are connected by a weak link a supercurrent flows determined by the differe...
International audienceThree-terminal superconductor (S)-normalmetal (N)-superconductor (S) Josephson...
International audienceWe describe the proximity effect in a short disordered metallic junction betwe...
We investigate superconductor-insulator-ferromagnet-superconductor Josephson junctions using the qua...
Conductance of metallic heterostructures can be controlled by applying a gate voltage to a region in...
Superconducting systems that simultaneously lack space-inversion and time-reversal symmetries have r...
We determine the influence of the electronic band structure and interlayer coupling on the supercond...
We present a theory of the dc Josephson effect in contacts between Fe-based and spin-singlet s-wave ...
23 pages, 15 figuresInternational audienceWe analyze the spatial and energy dependence of the local ...
Properties of weak links between two superconductors, or Josephson junctions, make them interesting ...
We propose a model for the theoretical description of a weak-link Josephson junction, in which the w...
We investigate the transport properties of a one-dimensional superconductor-normal metal-superconduc...
van der Waals (vdW) Josephson junctions can possibly accelerate the development of an advanced super...
This chapter is devoted to the study of controllable proximity effects in superconductors (S), in te...
When two superconductors are connected by a weak link a supercurrent flows determined by the differe...
International audienceThree-terminal superconductor (S)-normalmetal (N)-superconductor (S) Josephson...
International audienceWe describe the proximity effect in a short disordered metallic junction betwe...
We investigate superconductor-insulator-ferromagnet-superconductor Josephson junctions using the qua...
Conductance of metallic heterostructures can be controlled by applying a gate voltage to a region in...
Superconducting systems that simultaneously lack space-inversion and time-reversal symmetries have r...
We determine the influence of the electronic band structure and interlayer coupling on the supercond...
We present a theory of the dc Josephson effect in contacts between Fe-based and spin-singlet s-wave ...
23 pages, 15 figuresInternational audienceWe analyze the spatial and energy dependence of the local ...
Properties of weak links between two superconductors, or Josephson junctions, make them interesting ...
We propose a model for the theoretical description of a weak-link Josephson junction, in which the w...
We investigate the transport properties of a one-dimensional superconductor-normal metal-superconduc...
van der Waals (vdW) Josephson junctions can possibly accelerate the development of an advanced super...
This chapter is devoted to the study of controllable proximity effects in superconductors (S), in te...