Levitons for electron quantum optics
arXiv:1610.04354 · doi:10.1002/pssb.201600650
Abstract
Single electron sources enable electron quantum optics experiments where single electrons emitted in a ballistic electronic interferometer plays the role of a single photons emitted in an optical medium in Quantum Optics. A qualitative step has been made with the recent generation of single charge levitons obtained by applying Lorentzian voltage pulse on the contact of the quantum conductor. Simple to realize and operate, the source emits electrons in the form of striking minimal excitation states called levitons. We review the striking properties of levitons and their possible applications in quantum physics to electron interferometry and entanglement. W Schematic generation of time resolved single charges called levitons using Lorentzian voltage pulses applied on a contact. A Quantum Point Contact is used to partition the levitons for further analysis. Injecting levitons on opposite contacts with a delay $\τ$ enables to probe electronic like Hong Ou Mandel correlations. Copyright line will be provided by the publisher 1 Single electron sources In this introduction, we will distinguish single charge sources from coherent single electrons sources. The former have been developed for quantum metrology where the goal is to transfer an integer charge at high frequency f through a conductor with good accuracy to realize a quantized current source whose current I = ef shows metrological accuracy. The latter, the coherent single electrons source, aims at emitting (injecting) a single electron whose wave-function is well defined and controlled to realize further single electron coherent manipulation via quantum gates. The gates are provided by electronic beam-splitters made with Quantum Point Contacts or provided by electronic Mach-Zehnder and Fabry-Prot interferometers. Here it is important that the injected single electron is the only excitation created in the conductor. The frequency f of injection is not chosen to have a large current, as current accuracy is not the goal, but only to get sufficient statistics on the electron transfer events to extract physical information. 1.1 single charge sources for current standards The first manipulation of single charges trace back to the early 90's where physicists took advantage of charge quan-tization of a submicronic metallic island nearly isolated from leads by tunnel barriers. The finite energy E C = e 2 /2C to charge the small capacitor C with a single charge being larger than temperature (typically one kelvin for
This an invited contribution submitted to a special issue on "single-electron control in solid-state devices"
References in corpus (13)
- An On-Demand Coherent Single Electron Source
- Coherence and Indistinguishability of Single Electrons Emitted by Independent Sources
- Minimal excitation states of electrons in one-dimensional wires
- Electrical control of a solid-state flying qubit
- Shot noise of a mesoscopic two-particle collider
- Coherent Particle Transfer in an On-Demand Single-Electron Source
- Partitioning of on-demand electron pairs
- Real time decoherence of Landau and Levitov quasi-particles in quantum Hall edge channels
- Electron and hole Hong-Ou-Mandel interferometry
- Quantum heat fluctuations of single particle sources
- Electron counting with a two-particle emitter
- Ultrafast Emission and Detection of a Single-Electron Gaussian Wave Packet: A Theoretical Study
- Mach-Zehnder interferometry with periodic voltage pulses
Cited by in corpus (52)
- Coherent control of single electrons: a review of current progress
- Two-photon interference: the Hong-Ou-Mandel effect
- Electron quantum optics as quantum signal processing
- A Josephson frequency for fractionally charged anyons
- Shot Noise in Mesoscopic Systems: from Single Particles to Quantum Liquids
- Anyons in Quantum Hall Interferometry
- Crystallization of Levitons in the fractional quantum Hall regime
- Minimal excitation states for heat transport in driven quantum Hall systems
- Hong-Ou-Mandel characterization of multiply charged Levitons
- Macroscopic electron quantum coherence in a solid-state circuit
- Pseudorandom binary injection of levitons for electron quantum optics
- Fractional charges in conventional sequential electron tunneling
- Transferring the quantum state of electrons across a Fermi sea with Coulomb interaction
- Controlling a quantum point junction on the surface of an antiferromagnetic topological insulator
- Emission and Coherent Control of Levitons in Graphene
- Levitons in superconducting point contacts
- Fluctuation dissipation relations for strongly correlated out-of-equilibrium circuits
- Hong-Ou-Mandel heat noise in the quantum Hall regime
- Unified time-dependent perturbative relations applied to spectroscopy through photo-drag current
- Levitons in helical liquids with Rashba spin-orbit coupling probed by a superconducting contact
- Two-terminal transport along a proximity induced superconducting quantum Hall edge
- Single-particle shot noise at non-zero temperature
- Time-resolved electrical detection of chiral edge vortex braiding
- Composite two-particle sources
- High-temperature fusion of a multi-electron leviton
- Multi-particle interference in an electronic Mach-Zehnder interferometer
- Current correlations of Cooper-pair tunneling into a quantum Hall system
- Influence of channel mixing in fermionic Hong-Ou-Mandel experiments
- Photoassisted shot noise spectroscopy at fractional filling factor
- Current cross-correlations in a quantum Hall collider at filling factor two
- Photoexcitation in two-dimensional topological insulators: Generating and controlling electron wavepackets in Quantum Spin Hall systems
- Two-electron selective coupling in an edge-state based conditional phase shifter
- Single-electron function at nonzero temperatures
- Electronic wave-packets in integer quantum Hall edge channels: relaxation and dissipative effects
- AC driven strongly correlated quantum circuits and Hall edge states: Unified photo-assisted noise and revisited minimal excitations
- Interaction effects and charge quantization in single-particle quantum dot emitters
- Normal and abnormal electron-hole pairs in a voltage-pulse-driven quantum conductor
- Current and shot noise in a normal metal-superconductor junction driven by spin-dependent periodic pulse sequence
- Quasiparticles states for integer- and fractional-charged electron wave packets
- Finite frequency noise in chiral Luttinger liquid coupled to phonons
- Levitons in correlated nano-scale systems
- Coherent current correlations in a double-dot Cooper pair splitter
- Hybrid interacting quantum Hall thermal machine
- Suppression of the radiation squeezing in interacting quantum Hall edge channels
- Correlated two-Leviton states in the fractional quantum Hall regime
- On-demand electron source with tunable energy distribution
- Auto- versus cross-correlation noise
- Synthetic fractional flux quanta in a ring of superconducting qubits
- Periodic source of energy-entangled electrons in helical states coupled to a BCS superconductor
- Instantaneous Emission Rate of Electron Transport through a quantum point contact
- Quantum coherence in noise power spectrum in two quantum dots
- Single-electron emission from degenerate quantum levels