A Josephson Quantum Electron Pump
arXiv:1102.4207 · doi:10.1038/nphys2053
Abstract
A macroscopic fluid pump works according to the law of Newtonian mechanics and transfers a large number of molecules per cycle (of the order of 10^23). By contrast, a nano-scale charge pump can be thought as the ultimate miniaturization of a pump, with its operation being subject to quantum mechanics and with only few electrons or even fractions of electrons transfered per cycle. It generates a direct current in the absence of an applied voltage exploiting the time-dependence of some properties of a nano-scale conductor. The idea of pumping in nanostructures was discussed theoretically a few decades ago [1-4]. So far, nano-scale pumps have been realised only in system exhibiting strong Coulombic effects [5-12], whereas evidence for pumping in the absence of Coulomb-blockade has been elusive. A pioneering experiment by Switkes et al. [13] evidenced the difficulty of modulating in time the properties of an open mesoscopic conductor at cryogenic temperatures without generating undesired bias voltages due to stray capacitances [14,15]. One possible solution to this problem is to use the ac Josephson effect to induce periodically time-dependent Andreev-reflection amplitudes in a hybrid normal-superconducting system [16]. Here we report the experimental detection of charge flow in an unbiased InAs nanowire (NW) embedded in a superconducting quantum interference device (SQUID). In this system, pumping may occur via the cyclic modulation of the phase of the order parameter of different superconducting electrodes. The symmetry of the current with respect to the enclosed magnetic flux [17,18] and bias SQUID current is a discriminating signature of pumping. Currents exceeding 20 pA are measured at 250 mK, and exhibit symmetries compatible with a pumping mechanism in this setup which realizes a Josephson quantum electron pump (JQEP).
7+ pages, 6 color figures
References in corpus (6)
Cited by in corpus (77)
- Spin-resolved Andreev levels and parity crossings in hybrid superconductor-semiconductor nanostructures
- Single-electron current sources: towards a refined definition of ampere
- Parity lifetime of bound states in a proximitized semiconductor nanowire
- A Josephson phase battery
- Numerical simulations of time resolved quantum electronics
- Current noise spectrum of a single particle emitter: theory and experiment
- The -SQUIPT: phase-engineering of Josephson topological materials
- Topological Floquet-Thouless energy pump
- Self-oscillating pump in a topological dissipative atom-cavity system
- Giant thermovoltage in single InAs-nanowire field-effect transistors
- Nonlocal thermoelectricity in a Cooper-pair splitter
- Magnetically-driven colossal supercurrent enhancement in InAs nanowire Josephson junctions
- Geometrical Pumping in Quantum Transport: Quantum Master Equation Approach
- Electrically Controlled Pumping of Spin Currents in Topological Insulators
- Enhancing single-parameter quantum charge pumping in carbon-based devices
- Pb/InAs nanowire Josephson junction with high critical current and magnetic flux focusing
- Signatures of topological phase transitions in Josephson current-phase discontinuities
- Single Quantum Level Electron Turnstile
- Spin Controlled Coexistence of 0 and π States in SFSFS Josephson Junctions
- Niobium Dayem nano-bridge Josephson field-effect transistors
- Adiabatic pumping in a double-dot Cooper-pair beam splitter
- Waiting time distribution for trains of quantized electron pulses
- Interaction effect on adiabatic pump of charge and spin in quantum dot
- Spin Chern Pumping from the Bulk of Two-Dimensional Topological Insulators
- Polarized heat current generated by quantum pumping in two-dimensional topological insulators
- Nonlinear adiabatic response of interacting quantum dots
- Double quantum dot Cooper-pair splitter at finite couplings
- Detection of the relaxation rates of an interacting quantum dot by a capacitively coupled sensor dot
- MicroSQUIDs based on V/Cu/V Josephson nanojunctions
- Vanadium gate-controlled Josephson half-wave nanorectifier
- Topological pumping in the one-dimensional Bose-Hubbard model
- Spin-polarized tunable photocurrents
- Very Strong Superconducting Proximity Effects in PbS Semiconductor Nanowires
- Suspended InAs nanowire Josephson junctions assembled via dielectrophoresis
- Quantum charge pumping through resonant crossed Andreev reflection in superconducting hybrid junction of Silicene
- Topological pumping in class-D superconducting wires
- Waiting times of entangled electrons in normal-superconducting junctions
- Zero-frequency noise in adiabatically driven, interacting quantum systems
- Intrinsic spin-orbit interaction in diffusive normal wire Josephson weak links: supercurrent and density of states
- Topological Signatures in Quantum Transport in Anomalous Floquet-Anderson Insulators
- Single Cooper-pair pumping in the adiabatic limit and beyond
- Singlet-Triplet Superconducting Quantum Magnetometer
- Quantum charge pumping through fractional Fermions in charge density modulated quantum wires and Rashba nanowires
- A ballistic quantum ring Josephson interferometer
- Nonadiabatic Josephson current pumping by microwave irradiation
- Non-adiabatic effect in quantum pumping for a spin-boson system
- Simulating time-dependent thermoelectric transport in quantum systems
- Andreev levels spectroscopy of topological three-terminal junctions
- Superconducting Quantum Interference Single-Electron Transistor
- Scattering by an oscillating barrier: quantum, classical, and semiclassical comparison
- A ballistic two-dimensional-electron-gas Andreev interferometer
- Random-walk topological transition revealed via electron counting
- Spin pumping through quantum dots
- Dirac electrons in quantum rings
- Shiba Bound States across the mobility edge in doped InAs nanowires
- Geometric quantum pumping in the presence of dissipation
- Pumping charge with ac magnetic fluxes and the dynamical breakdown of Onsager symmetry
- Phase-Controllable Nonlocal Spin Polarization in Proximitized Nanowires
- The Josephson junction as a quantum engine
- Temperature-driven and electrochemical-potential-driven adiabatic pumping via a quantum dot
- Spectral representation of the heat current in a driven Josephson junction
- Nonadiabatic pure spin pumping in zigzag graphene nanoribbons with proximity induced ferromagnetism
- Phase-driven charge manipulation in Hybrid Single-Electron Transistor
- Bulk-edge correspondence in topological transport and pumping
- Ultra-Highly Linear Magnetic Flux-to-Voltage response in Proximity-based Mesoscopic bi-SQUIDs
- Adiabatic quantum pumping through surface states in 3D topological insulators
- Coherent Cooper-pair pumping by magnetic flux control
- Phase slips dynamics in gated Ti and V all-metallic supercurrent nano-transistors: a review
- Coherent superconducting quantum pump
- Quantum Paddlewheel with Ultracold Atoms in Waveguides
- Quantum transport phenomena induced by time-dependent fields
- Zero bias conductance peak in InAs nanowire coupled to superconducting electrodes
- Ballistic atom pumps
- Flux pumping of Cooper pairs through a Josephson Energy-Suppression Pump
- Inherent fluctuation-mediated equivalent force drives directional motions of nanoscale asymmetric particles -- Surf-riding of asymmetric molecules in thermal fluctuations
- Dynamical Resonances and Stepped Current in an Attractive Quantum Pump
- Open quantum dynamics of Josephson charge pumps