Controlled catch and release of microwave photon states
arXiv:1208.2950 · doi:10.1103/PhysRevLett.110.107001
Abstract
The quantum behavior of superconducting qubits coupled to resonators is very similar to that of atoms in optical cavities [1, 2], in which the resonant cavity confines photons and promotes strong light-matter interactions. The cavity end-mirrors determine the performance of the coupled system, with higher mirror reflectivity yielding better quantum coherence, but higher mirror transparency giving improved measurement and control, forcing a compromise. An alternative is to control the mirror transparency, enabling switching between long photon lifetime during quantum interactions and large signal strength when performing measurements. Here we demonstrate the superconducting analogue, using a quantum system comprising a resonator and a qubit, with variable coupling to a measurement transmission line. The coupling can be adjusted through zero to a photon emission rate 1,000 times the intrinsic photon decay rate. We use this system to control photons in coherent states as well as in non-classical Fock states, and dynamically shape the waveform of released photons. This has direct applications to circuit quantum electrodynamics [3], and may enable high-fidelity quantum state transfer between distant qubits, for which precisely-controlled waveform shaping is a critical and non-trivial requirement [4, 5].
References in corpus (14)
- An Elementary Quantum Network of Single Atoms in Optical Cavities
- Strong Coupling of a Spin Ensemble to a Superconducting Resonator
- Approaching Unit Visibility for Control of a Superconducting Qubit with Dispersive Readout
- Generating Single Microwave Photons in a Circuit
- Quantum Non-demolition Detection of Single Microwave Photons in a Circuit
- Single-shot qubit readout in circuit Quantum Electrodynamics
- Single-shot qubit readout in circuit Quantum Electrodynamics
- Measurements of the Correlation Function of a Microwave Frequency Single Photon Source
- Deterministic entanglement of photons in two superconducting microwave resonators
- Controllable coupling of superconducting flux qubits
- Tunable resonators for quantum circuits
- Tunable coupling in circuit quantum electrodynamics with a superconducting V-system
- Dynamic release of trapped light from an ultrahigh-Q nanocavity via adiabatic frequency tuning
- Photon shell game in three-resonator circuit quantum electrodynamics
Cited by in corpus (130)
- Circuit Quantum Electrodynamics
- A Quantum Engineer's Guide to Superconducting Qubits
- Microwave photonics with superconducting quantum circuits
- On-demand quantum state transfer and entanglement between remote microwave cavity memories
- Deterministic multi-qubit entanglement in a quantum network
- Single microwave-photon detector using an artificial -type three-level system
- Deterministic remote entanglement of superconducting circuits through microwave two-photon transitions
- Microwave-controlled generation of shaped single photons in circuit quantum electrodynamics
- Enhancing cavity QED via anti-squeezing: synthetic ultra-strong coupling
- Quantum memory for microwave photons in an inhomogeneously broadened spin ensemble
- On-Demand Directional Microwave Photon Emission Using Waveguide Quantum Electrodynamics
- Generating Grid States From Schrödinger Cat States without Post-Selection
- Superconducting quantum node for entanglement and storage of microwave radiation
- Schrodinger's catapult: Launching multiphoton quantum states from a microwave cavity memory
- Universal holonomic quantum gates in decoherence-free subspace on superconducting circuits
- Catching Shaped Microwave Photons with 99.4% Absorption Efficiency
- A "Single-Photon" Transistor in Circuit Quantum Electrodynamics
- Detection of zeptojoule microwave pulses using electrothermal feedback in proximity-induced Josephson junctions
- Chiral Quantum Network with Giant Atoms
- Quantum nondemolition detection of a propagating microwave photon
- Microwave-Induced Amplitude and Phase Tunable Qubit-Resonator Coupling in Circuit Quantum Electrodynamics
- Intracity quantum communication via thermal microwave networks
- Superconducting switch for fast on-chip routing of quantum microwave fields
- Steady state entanglement of two superconducting qubits engineered by dissipation
- Ultrafast nonlocal control of spontaneous emission
- Scalable quantum memory in the ultrastrong coupling regime
- Purcell effect with microwave drive: Suppression of qubit relaxation rate
- Storage and on-demand release of microwaves using superconducting resonators with tunable coupling
- Universal quantum gates on microwave photons assisted by circuit quantum electrodynamics
- Excite atom-photon bound state inside the coupled-resonator waveguide coupled with a giant atom
- Tunable and Switchable Coupling Between Two Superconducting Resonators
- Excitation of superconducting qubits from hot non-equilibrium quasiparticles
- Giant atoms with time-dependent couplings
- Probing Quantum Interference Effects in the Work Distribution
- Tunable coupling to a mechanical oscillator circuit using a coherent feedback network
- On-demand microwave generator of shaped single photons
- Complex decoherence-free interactions between giant atoms
- Quantum-enabled temporal and spectral mode conversion of microwave signals
- Storage and retrieval of microwave fields at the single-photon level in a spin ensemble
- Continuous wave single photon transistor based on a superconducting circuit
- Time-Reversal Symmetrization of Spontaneous Emission for High Fidelity Quantum State Transfer
- Fast tunable high Q-factor superconducting microwave resonators
- Programmable directional emitter and receiver of itinerant microwave photons in a waveguide
- Heisenberg-limited qubit readout with two-mode squeezed light
- Dynamically controlling the emission of single excitons in photonic crystal cavities
- Quantum communication with time-bin encoded microwave photons
- Towards a spin-ensemble quantum memory for superconducting qubits
- Hybrid quantum systems with trapped charged particles
- Antibunched photons from inelastic Cooper-pair tunneling
- Correlations and entanglement of microwave photons emitted in a cascade decay
- Stabilizer quantum error correction toolbox for superconducting qubits
- Feedback Control of Rabi Oscillations in Circuit QED
- Perfect squeezing by damping modulation in circuit quantum electrodynamics
- Theory of microwave single-photon detection using an impedance-matched system
- Ultrastrongly dissipative quantum Rabi model
- Nonreciprocal Signal Routing in an Active Quantum Network
- Number-resolved photocounter for propagating microwave mode
- Fock-state stabilization and emission in superconducting circuits using dc-biased Josephson junctions
- Propagating Quantum Microwaves: Towards Applications in Communication and Sensing
- Tunable hole spin-photon interaction based on g-matrix modulation
- One-photon Solutions to Multiqubit Multimode quantum Rabi model
- On-Demand Storage and Retrieval of Microwave Photons Using a Superconducting Multiresonator Quantum Memory
- Reducing Spontaneous Emission in Circuit Quantum Electrodynamics by a Combined Readout/Filter Technique
- Catch and release of propagating bosonic field with non-Markovian giant atom
- Deterministic quantum state transfer between remote qubits in cavities
- Detecting itinerant single microwave photons
- Emergent symmetry in a double-quantum-dot circuit QED set-up
- Generation and efficient measurement of single photons from fixed frequency superconducting qubits
- Catch-Disperse-Release Readout for Superconducting Qubits
- Qubit Parity Measurement by Parametric Driving in Circuit QED
- Robust quantum state transfer using tunable couplers
- Realizing modular quadrature measurements via a tunable photon-pressure coupling in circuit-QED
- Towards long-distance quantum networks with superconducting processors and optical links
- Scattering of coherent pulses on a two-level system - single-photon generation
- Violation of Bell's Inequality in Electromechanics
- A bright on-demand source of anti-bunched microwave photons based on inelastic Cooper pair tunneling
- Cavity quantum electrodynamics with an out-of-equilibrium quantum dot
- A cryogenic on-chip microwave pulse generator for large-scale superconducting quantum computing
- Bidirectional multi-photon communication between remote superconducting nodes
- Signatures of Hong-Ou-Mandel Interference at Microwave Frequencies
- The scattering coefficients of superconducting microwave resonators: I. Transfer-matrix approach
- Strong parametric dispersive shifts in a statically decoupled multi-qubit cavity QED system
- Nonlinearity and Parametric Amplification of Superconducting Nanowire Resonators in Magnetic Field
- Dressed-state engineering for continuous detection of itinerant microwave photons
- Coherently opening a high-Q cavity
- Staggered quantum walks with superconducting microwave resonators
- Steady-state generation of Wigner negative states in 1D resonance fluorescence
- Nondestructive photon counting in waveguide QED
- Precision is not limited by the second law of thermodynamics
- Simple, robust and on-demand generation of single and correlated photons
- Unified generation and fast emission of arbitrary single-photon multimode states
- Deterministic Many-Resonator W Entanglement of Nearly Arbitrary Microwave States via Attractive Bose-Hubbard Simulation
- Efficient optimization of state preparation in quantum networks using quantum trajectories
- Resonant and off-resonant microwave signal manipulation in coupled superconducting resonators
- Counting statistics of microwave photons in circuit QED
- Perfectly capturing traveling single photons of arbitrary temporal wavepackets with a single tunable device
- Tuning coupling between superconducting resonators with collective qubits
- Site-wise manipulations and Mott insulator-superfluid transition of interacting photons using superconducting circuit simulators
- Universal distributed quantum computing on superconducting qutrits with dark photons
- Output squeezed radiation from dispersive ultrastrong light-matter coupling
- Input-output theory for superconducting and photonic circuits that contain weak retro-reflections and other weak pseudo-cavities
- Circuit QED flip-flop memory with all-microwave switching
- Exploring the Limits of Controlled Markovian Quantum Dynamics with Thermal Resources
- Universal time-dependent control scheme for realizing arbitrary linear bosonic transformations
- Concurrent Remote Entanglement with Quantum Error Correction
- Deterministic three-photon down-conversion by a passive ultrastrong cavity-QED system
- Tunable slowing, storing and releasing of a weak microwave field
- Dressed Interference in Giant Superatoms: Entanglement Generation and Transfer
- Time-frequency encoded single-photon sources and broadband quantum memories based on a tunable one-dimensional atom
- The Multimode Character of Quantum States Released from a Superconducting Cavity
- Higher-Dimensional Bell Inequalities with Noisy Qudits
- Quantum statistics of four-wave mixing by a non-linear resonant microcavity
- Reachable Sets from Toy Models to Controlled Markovian Quantum Systems
- Entanglement of photonic modes from a continuously driven two-level system
- Deterministic single-photon source in the ultrastrong coupling regime
- Detection of emitter-resonator coupling strength in quantum Rabi model via an auxiliary resonator
- Loss-tolerant parity measurement for distant quantum bits
- Deterministic two-photon C-Z gate with the two-photon quantum Rabi model
- Quantum Optimal Control Theory for the Shaping of Flying Qubits
- On-demand shaped photon emission based on a parametrically modulated qubit
- Quantum phases transition revealed by the exceptional point in Hopfield-Bogoliubov matrix
- A single-photon microwave switch with recoverable control photon
- Control over few photon pulses by a time-periodic modulation of the photon-emitter coupling
- Dynamics and multiqubit entanglement in distant resonators
- Demonstration of deterministic SWAP gate between superconducting and frequency-encoded microwave-photon qubits
- Optimizing the frequency positioning of tunable couplers in a circuit QED processor to mitigate spectator effects on quantum operations
- Position-momentum entangled photon pairs in non-linear wave-guides and transmission lines
- Prediction-retrodiction measurements for teleportation and conditional state transfer
- Quantum state transfer and controlled-phase gate on one-dimensional superconducting resonators assisted by a quantum bus
- Floquet-engineered system-reservoir interaction in the transverse field Ising model