Andreev reflection in the fractional quantum Hall state
arXiv:2009.07836 · doi:10.1103/PhysRevX.12.021057
Abstract
We construct high-quality graphene-based van der Waals devices with narrow superconducting niobium nitride (NbN) electrodes, in which superconductivity and robust fqH coexist. We find crossed Andreev reflection (CAR) across the superconductor separating two fqH edges. Our observed CAR probabilities in the particle-like fractional fillings are markedly higher than those in the integer and hole-conjugate fractional fillings and depend strongly on temperature and magnetic field unlike the other fillings. Further, we find a filling-independent CAR probability in integer fillings, which we attribute to spin-orbit coupling in NbN allowing for Andreev reflection between spin-polarized edges. These results provide a route to realize novel topological superconducting phases in fqH-superconductor hybrid devices based on graphene and NbN.
Revised text, additional main and appendix figures
References in corpus (22)
- Non-Abelian Anyons and Topological Quantum Computation
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Classification of topological insulators and superconductors in three spatial dimensions
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- Observation of Majorana Fermions in Ferromagnetic Atomic Chains on a Superconductor
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Intrinsic and Rashba Spin-orbit Interactions in Graphene Sheets
- Anomalous modulation of a zero bias peak in a hybrid nanowire-superconductor device
- Exotic non-Abelian anyons from conventional fractional quantum Hall states
- Fractionalizing Majorana fermions: non-abelian statistics on the edges of abelian quantum Hall states
- Superconducting Proximity Effect on the Edge of Fractional Topological Insulators
- Fractional topological superconductors with fractionalized Majorana fermions
- Even denominator fractional quantum Hall state in bilayer graphene
- Crossed Andreev reflection in a graphene bipolar transistor
- Quantum Hall effect in graphene with superconducting electrodes
- Charge and Spin Transport at the Quantum Hall Edge of Graphene
- Fibonacci Anyons From Abelian Bilayer Quantum Hall States
- Crossed Andreev effects in two-dimensional quantum Hall systems
- Mechanisms of Andreev reflection in quantum Hall graphene
- Andreev reflection of fractional quantum Hall quasiparticles
- Insulating regime of an underdamped current-biased Josephson junction supporting and parafermions
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- Induced superconducting correlations in the quantum anomalous Hall insulator
- Disorder in Andreev reflection of a quantum Hall edge
- Superconductivity and fermionic dissipation in quantum Hall edges
- Crossed Andreev reflection in spin-polarized chiral edge states due to the Meissner effect
- Supercurrent-enabled Andreev reflection in a chiral quantum Hall edge state
- Loss and decoherence at the quantum Hall - superconductor interface
- Vortex-enabled Andreev processes in quantum Hall-superconductor hybrids
- Geometrical effects on the downstream conductance in quantum-Hall--superconductor hybrid systems
- Perfect crossed Andreev reflection in the proximitized graphene/superconductor/proximitized graphene junctions
- Exact Dirac-Bogoliubov-de Gennes Dynamics for Inhomogeneous Quantum Liquids
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- SU(4) Symmetry Breaking and Induced Superconductivity in Graphene Quantum Hall Edges
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- Non-local transport measurements in hybrid quantum Hall - superconducting devices
- Andreev Reflection in the Quantum Hall Regime at an Al/InAs Junction on a Cleaved Edge
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- Disorder-induced topological superconductivity in a spherical quantum-Hall--superconductor hybrid
- Chirality-selective proximity effect between chiral -wave superconductors and quantum Hall insulators
- Engineering superconducting contacts transparent to a bipolar graphene
- Thermal properties of the superconductor-quantum Hall interfaces
- Floquet-Nambu theory of electron quantum optics with superconductors
- On-Demand and Tunable Andreev-Conversion of Single-Electron Charge Pulses
- Quasi--periodic supercurrent at quantum Hall transitions
- Edge optical effect as a probe of chiral topological superconductors
- Signatures of Parafermion Zero Modes in Fractional Quantum Hall-Superconductor Heterostructures
- Quantum computation with hybrid parafermion-spin qubits
- Can Majorana zero modes in quantum Hall edges survive edge reconstruction?
- Anisotropic supercurrent suppression and revivals in a graphene-based Josephson junction under in-plane magnetic fields
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- Buried Dirac points in quantum spin Hall insulators: Implications for Majorana Kramers pair-based quantum computing
- Tunneling density of states in Luttinger Liquid in proximity to a superconductor: Effect of non-local interaction
- Revealing Superconducting Chiral Edge Modes via Resistance Distributions
- Edge dependence of the Josephson current in the quantum Hall regime
- Quantized Transport of Fractional Quantum Hall Edge with Disordered Superconducting Proximity