Cavity QED with separate photon storage and qubit readout modes
arXiv:0911.4951 · doi:10.1103/PhysRevLett.104.100504
Abstract
We present the realization of a cavity quantum electrodynamics setup in which photons of strongly different lifetimes are engineered in different harmonic modes of the same cavity. We achieve this in a superconducting transmission line resonator with superconducting qubits coupled to the different modes. One cavity mode is strongly coupled to a detection line for qubit state readout, while a second long lifetime mode is used for photon storage and coherent quantum operations. We demonstrate sideband based measurement of photon coherence, generation of n photon Fock states and the scaling of the sideband Rabi frequency with the square root of n using a scheme that may be extended to realize sideband based two-qubit logic gates.
4 pages, 5 figures, version with high resolution figures available at http://qudev.ethz.ch/content/science/PubsPapers.html
References in corpus (20)
- Charge insensitive qubit design derived from the Cooper pair box
- Demonstration of Two-Qubit Algorithms with a Superconducting Quantum Processor
- Resolving photon number states in a superconducting circuit
- Approaching Unit Visibility for Control of a Superconducting Qubit with Dispersive Readout
- Suppressing Charge Noise Decoherence in Superconducting Charge Qubits
- Climbing the Jaynes-Cummings Ladder and Observing its Sqrt(n) Nonlinearity in a Cavity QED System
- AC-Stark Shift and Dephasing of a Superconducting Qubit Strongly Coupled to a Cavity Field
- Generating Single Microwave Photons in a Circuit
- Quantum State Engineering and Precision Metrology using State-Insensitive Light Traps
- Coplanar Waveguide Resonators for Circuit Quantum Electrodynamics
- Dressed Collective Qubit States and the Tavis-Cummings Model in Circuit QED
- Quantum trajectory approach to circuit QED: Quantum jumps and the Zeno effect
- Nonlinear response of the vacuum Rabi resonance
- Single-shot qubit readout in circuit Quantum Electrodynamics
- Single-shot qubit readout in circuit Quantum Electrodynamics
- Microwave Dielectric Loss at Single Photon Energies and milliKelvin Temperatures
- Using Sideband Transitions for Two-Qubit Operations in Superconducting Circuits
- Two-Qubit State Tomography using a Joint Dispersive Read-Out
- Sideband Transitions and Two-Tone Spectroscopy of a Superconducting Qubit Strongly Coupled to an On-Chip Cavity
- Dynamics of dispersive single qubit read-out in circuit quantum electrodynamics
Cited by in corpus (86)
- Circuit Quantum Electrodynamics
- Microwave photonics with superconducting quantum circuits
- Quantum Non-demolition Detection of Single Microwave Photons in a Circuit
- Dynamic quantum Kerr effect in circuit quantum electrodynamics
- Controlled catch and release of microwave photon states
- Searching for Dark Matter with a Superconducting Qubit
- First-order sideband transitions with flux-driven asymmetric transmon qubits
- Control and Tomography of a Three Level Superconducting Artificial Atom
- Cavity-based architecture to preserve quantum coherence and entanglement
- Quantum information processing with bosonic qubits in circuit QED
- Minimal resonator loss for circuit quantum electrodynamics
- Photon shell game in three-resonator circuit quantum electrodynamics
- Coherent control of a symmetry-engineered multi-qubit dark state in waveguide quantum electrodynamics
- Single-photon-driven high-order sideband transitions in an ultrastrongly coupled circuit quantum electrodynamics system
- Single-Shot Quantum Non-Demolition Detection of Itinerant Microwave Photons
- First-order sidebands in circuit QED using qubit frequency modulation
- Observation of Entanglement Between Itinerant Microwave Photons and a Superconducting Qubit
- Arbitrary Control of Entanglement between Two Superconducting Resonators
- Generating entanglement between microwave photons and qubits in multiple cavities coupled by a superconducting qutrit
- Multi-mode mediated exchange coupling in cavity QED
- Etch Induced Microwave Losses in Titanium Nitride Superconducting Resonators
- Generation of GHZ entangled states of photons in multiple cavities via a superconducting qutrit or an atom through resonant interaction
- Coherent spin control by electrical manipulation of the magnetic anisotropy
- Universal quantum gates on microwave photons assisted by circuit quantum electrodynamics
- Fast and simple scheme for generating NOON states of photons in circuit QED
- Entangling superconducting qubits in a multi-cavity system
- Deterministic Generation of Large Fock States
- One-step implementation of a hybrid Fredkin gate with quantum memories and single superconducting qubit in circuit QED and its applications
- Optimal synchronization deep in the quantum regime: resource and fundamental limit
- All-Resonant Control of Superconducting Resonators
- Quantum information processing on nitrogen-vacancy ensembles with the local resonance assisted by circuit QED
- Fermion parity measurement and control in Majorana circuit quantum electrodynamics
- Entanglement generation and quantum information transfer between spatially-separated qubits in different cavities
- Number-resolved photocounter for propagating microwave mode
- Optimal energy storage in the Tavis-Cummings quantum battery
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- Greenberger-Horne-Zeilinger generation protocol for N superconducting transmon qubits capacitively coupled to a quantum bus
- Efficient scheme for generation of photonic NOON states in circuit QED
- Single-step implementation of a multiple-target-qubit controlled phase gate without need of classical pulses
- Universal controlled-phase gate with cat-state qubits in circuit QED
- Relations between entanglement and purity in non-Markovian dynamics
- Generating double NOON states of photons in circuit QED
- Generation and stabilization of a three-qubit entangled W state in circuit QED via quantum feedback control
- Crosstalk-insensitive method for simultaneously coupling multiple pairs of resonators
- Single-step implementation of a hybrid controlled-NOT gate with one superconducting qubit simultaneously controlling multiple target cat-state qubits
- Circuit QED: single-step realization of a multiqubit controlled phase gate with one microwave photonic qubit simultaneously controlling microwave photonic qubits
- Robust population inversion in three-level systems by composite pulses
- Efficient transfer of an arbitrary qutrit state in circuit QED
- Shaping photons: quantum computation with bosonic cQED
- Multiplex-controlled phase gate with qubits distributed in a multi-cavity system
- Generating NOON states in circuit QED using multi-photon resonance in the presence of counter-rotating interactions
- Disorder-dressed quantum evolution
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- Compact 3D quantum memory
- An efficient protocol of quantum walk in circuit QED
- Single-photon heat conduction in electrical circuits
- Improved qubit bifurcation readout in the straddling regime of circuit QED
- Scalable one-way quantum computer using on-chip resonator qubits
- Tuning coupling between superconducting resonators with collective qubits
- Sideband transitions in a two-mode Josephson circuit driven beyond the rotating wave approximation
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- Single-step transfer or exchange of multipartite quantum entanglement with minimum resources
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- Generating multipartite entangled states of qubits distributed in different cavities
- Generation of quantum entangled states of multiple groups of qubits distributed in multiple cavities
- Role of parasitic interactions and microwave crosstalk in dispersive control of two superconducting artificial atoms
- Superradiance of cold atoms coupled to a superconducting circuit
- Fast quantum information transfer with superconducting flux qubits coupled to a cavity
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- Entanglement Dynamics of Two V-type Atoms with Dipole-Dipole Interaction in Dissipative Cavity
- Readout of a weakly coupled qubit through the use of an auxiliary mode
- Deterministic transfer of an unknown qutrit state assisted by the low-Q microwave resonators
- Transferring multiqubit entanglement onto memory qubits in a decoherence-free subspace
- Dynamics and multiqubit entanglement in distant resonators
- Von Neumann entropy in a dispersive cavity
- Quantum voting machine encoded with microwave photons
- Transferring multipartite entanglement among different cavities
- Circuit QED: Cross-Kerr-effect induced by a superconducting qutrit without classical pulses
- Preparing Greenberger-Horne-Zeilinger Entangled Photon Fock States of Three Cavities Coupled by a Superconducting Flux Qutrit
- Selective Preparation of Collective States in Coupled Quantum Emitters Using the SUPER Excitation Scheme
- Circuit QED: Implementation of the three-qubit refined Deutsch-Jozsa quantum algorithm
- Transferring entangled states of photonic cat-state qubits in circuit QED
- Multi-target-qubit unconventional geometric phase gate in a multi-cavity system
- Circuit QED: Generation of two-transmon-qutrit entangled states via resonant interaction