Supercurrent and Andreev bound state dynamics in superconducting quantum point contacts under microwave irradiation
arXiv:1105.1016 · doi:10.1103/PhysRevB.84.054504
Abstract
We present here an extensive theoretical analysis of the supercurrent of a superconducting point contact of arbitrary transparency in the presence of a microwave field. Our study is mainly based on two different approaches: a two-level model that describes the dynamics of the Andreev bound states in these systems and a fully microscopic method based on the Keldysh-Green function technique. This combination provides both a deep insight into the physics of irradiated Josephson junctions and quantitative predictions for arbitrary range of parameters. The main predictions of our analysis are: (i) for weak fields and low temperatures, the microwaves can induce transitions between the Andreev states leading to a large suppression of the supercurrent at certain values of the phase, (ii) at strong fields, the current-phase relation is strongly distorted and the corresponding critical current does not follow a simple Bessel-function-like behavior, and (iii) at finite temperature, the microwave field can enhance the critical current by means of transitions connecting the continuum of states outside the gap region and the Andreev states inside the gap. Our study is of relevance for a large variety of superconducting weak links as well as for the proposals of using the Andreev bound states of a point contact for quantum computing applications.
16 pages, 11 figures, submitted to Phys. Rev. B
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- Levitons in superconducting point contacts
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- Resonators coupled to voltage-biased Josephson junctions: From linear response to strongly driven nonlinear oscillations
- Nonadiabatic Josephson current pumping by microwave irradiation
- Spin-precession-assisted supercurrent in a superconducting quantum point contact coupled to a single-molecule magnet
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- Signatures of the Higgs mode in transport through a normal-metal--superconductor junction
- Microwave-induced conductance replicas in hybrid Josephson junctions without Floquet-Andreev states
- Control of Andreev bound state population and related charge-imbalance effect
- Nonequilibrium Andreev bound states population in short superconducting junctions coupled to a resonator
- Thermal transport through ac-driven transparent Josephson weak links
- Strong effects of weak ac driving in short superconducting junctions
- Superconducting atomic contacts inductively coupled to a microwave resonator
- Magnetic resonance in a singlet-triplet Josephson junction
- Detection of ultrafast oscillations in Superconducting Point-Contacts by means of Supercurrent Measurements