0-Pi quantum transition in a carbon nanotube Josephson junction: Universal phase dependence and orbital degeneracy
arXiv:1712.08372 · doi:10.1016/j.physb.2017.09.034
Abstract
In a quantum dot hybrid superconducting junction, the behavior of the supercurrent is dominated by Coulomb blockade physics, which determines the magnetic state of the dot. In particular, in a single level quantum dot singly occupied, the sign of the supercurrent can be reversed, giving rise to a pi-junction. This 0-pi transition, corresponding to a singlet-doublet transition, is then driven by the gate voltage or by the superconducting phase in the case of strong competition between the superconducting proximity effect and Kondo correlations. In a two-level quantum dot, such as a clean carbon nanotube, 0-pi transitions exist as well but, because more cotunneling processes are allowed, are not necessarily associated to a magnetic state transition of the dot. In this proceeding, after a review of 0-pi transitions in Josephson junctions, we present measurements of current-phase relation in a clean carbon nanotube quantum dot, in the single and two-level regimes. In the single level regime, close to orbital degeneracy and in a regime of strong competition between local electronic correlations and superconducting proximity effect, we find that the phase diagram of the phase-dependent transition is a universal characteristic of a discontinuous level-crossing quantum transition at zero temperature. In the case where the two levels are involved, the nanotube Josephson current exhibits a continuous 0-pi transition, independent of the superconducting phase, revealing a different physical mechanism of the transition.
Proceedings SCES 2017, accepted for publication in Physica B
References in corpus (18)
- Supercurrent reversal in quantum dots
- Quantum phase transition in a single-molecule quantum dot
- Anomalous Josephson effect induced by spin-orbit interaction and Zeeman effect in semiconductor nanowires
- Kondo effect in quantum dots
- Half-integer Shapiro steps at the 0-pi crossover of a ferromagnetic Josephson junction
- Spectral properties of locally correlated electrons in a BCS superconductor
- Critical Current 0- Transition in Designed Josephson Quantum Dot Junctions
- Josephson current through a single Anderson impurity coupled to BCS leads
- Even-odd effect in Andreev Transport through a Carbon Nanotube Quantum Dot
- Ballistic edge states in Bismuth nanowires revealed by SQUID interferometry
- SU(4) and SU(2) Kondo Effects in Carbon Nanotube Quantum Dots
- Tuning Yu-Shiba-Rusinov States in a Quantum Dot
- Quantum Phase Transition in a Resonant Level Coupled to Interacting Leads
- Transport Measurement of Andreev Bound States in a Kondo-Correlated Quantum Dot
- Superconductivity-enhanced bias spectroscopy in carbon nanotube quantum dots
- Manipulating the magnetic state of a carbon nanotube Josephson junction using the superconducting phase
- Josephson current through interacting double quantum dots with spin-orbit coupling
- Josephson current through a molecular transistor in a dissipative environment
Cited by in corpus (24)
- Ballistic edge states in Bismuth nanowires revealed by SQUID interferometry
- Singlet-doublet transitions of a quantum dot Josephson junction detected in a transmon circuit
- Nonlocal Josephson effect in Andreev molecules
- Controlling Quantum Transport via Dissipation Engineering
- Multiple Andreev reflections and Shapiro steps in a Ge-Si nanowire Josephson junction
- Phase Controllable Josephson Junctions for Cryogenic Memory
- Triplet-blockaded Josephson supercurrent in double quantum dots
- Practical Guide to Quantum Phase Transitions in Quantum-Dot-Based Tunable Josephson Junctions
- Generalized atomic limit of a double quantum dot coupled to superconducting leads
- Zeeman effect induced 0- transitions in ballistic Dirac semimetal Josephson junctions
- Surrogate model solver for impurity-induced superconducting subgap states
- Josephson junctions in double nanowires bridged by in-situ deposited superconductors
- Supercurrent through a spin-split quasi-ballistic point contact in an InAs nanowire
- Microwave studies of the fractional Josephson effect in HgTe-based Josephson junctions
- Correlation effects in superconducting quantum dot systems
- Transient dynamics of a magnetic impurity coupled to superconducting electrodes: exact numerics versus perturbation theory
- Phase and Thermal Driven Transport across T-Shaped Double Quantum Dot Josephson Junction
- Andreev spin relaxation time in a shadow-evaporated InAs weak link
- Phase-controlled spin and charge currents in superconductor-ferromagnet hybrids
- Ballistic SNS sandwich as a Josephson junction
- Enhancement of the Kondo effect in a quantum dot formed in a full-shell nanowire
- Resonator induced quantum phase transitions in a hybrid Josephson junction
- Quantum phase transitions in superconductor--quantum-dot--superconductor Josephson structures with attractive intradot interaction
- Quantum phase transition in a double quantum dot Josephson junction driven by electron-electron interactions