Quantum acoustics with superconducting qubits
arXiv:1703.00342 · doi:10.1126/science.aao1511
Abstract
The ability to engineer and manipulate different types of quantum mechanical objects allows us to take advantage of their unique properties and create useful hybrid technologies. Thus far, complex quantum states and exquisite quantum control have been demonstrated in systems ranging from trapped ions to superconducting resonators. Recently, there have been many efforts to extend these demonstrations to the motion of complex, macroscopic objects. These mechanical objects have important applications as quantum memories or transducers for measuring and connecting different types of quantum systems. In particular, there have been a few experiments that couple motion to nonlinear quantum objects such as superconducting qubits. This opens up the possibility of creating, storing, and manipulating non-Gaussian quantum states in mechanical degrees of freedom. However, before sophisticated quantum control of mechanical motion can be achieved, we must realize systems with long coherence times while maintaining a sufficient interaction strength. These systems should be implemented in a simple and robust manner that allows for increasing complexity and scalability in the future. Here we experimentally demonstrate a high frequency bulk acoustic wave resonator that is strongly coupled to a superconducting qubit using piezoelectric transduction. In contrast to previous experiments with qubit-mechanical systems, our device requires only simple fabrication methods, extends coherence times to many microseconds, and provides controllable access to a multitude of phonon modes. We use this system to demonstrate basic quantum operations on the coupled qubit-phonon system. Straightforward improvements to the current device will allow for advanced protocols analogous to what has been shown in optical and microwave resonators, resulting in a novel resource for implementing hybrid quantum technologies.
21 pages, 12 figures, including supplementary information
References in corpus (8)
- Charge insensitive qubit design derived from the Cooper pair box
- Confining the state of light to a quantum manifold by engineered two-photon loss
- Propagating phonons coupled to an artificial atom
- Nonlinear response of the vacuum Rabi resonance
- Sideband Cooling Beyond the Quantum Limit with Squeezed Light
- Microwave Dielectric Loss at Single Photon Energies and milliKelvin Temperatures
- Demonstrating a Driven Reset Protocol of a Superconducting Qubit
- Macroscopicity of Mechanical Quantum Superposition States
Cited by in corpus (134)
- Topological Photonics
- Remote quantum entanglement between two micromechanical oscillators
- Quantum transduction of optical photons from a superconducting qubit
- Entanglement-based single-shot detection of a single magnon with a superconducting qubit
- Cavity Magnonics
- Measurement-based quantum control of mechanical motion
- Quantum control of surface acoustic wave phonons
- Creation and control of multi-phonon Fock states in a bulk acoustic wave resonator
- Demonstration of quantum error correction and universal gate set on a binomial bosonic logical qubit
- Microwave-to-optics conversion using a mechanical oscillator in its quantum groundstate
- Hanbury Brown and Twiss interferometry of single phonons from an optomechanical resonator
- Nonexponential decay of a giant artificial atom
- Controlling phonons and photons at the wavelength-scale: silicon photonics meets silicon phononics
- Controlling the coherence of a diamond spin qubit through strain engineering
- Resolving the energy levels of a nanomechanical oscillator
- Schrödinger cat states of a 16-microgram mechanical oscillator
- Fast Universal Control of an Oscillator with Weak Dispersive Coupling to a Qubit
- An optomechanical Bell test
- Hardware-efficient quantum random access memory with hybrid quantum acoustic systems
- Cavity quantum acoustic device in the multimode strong coupling regime
- Single-photon scattering and bound states in an atom-waveguide system with two or multiple coupling points
- Mesoscopic physics of nanomechanical systems
- Precision ultrasound sensing on a chip
- Quantum state preparation, tomography, and entanglement of mechanical oscillators
- Noise-Tolerant Optomechanical Entanglement via Synthetic Magnetism
- Mechanical Quantum Sensing in the Search for Dark Matter
- Resolving Phonon Fock States in a Multimode Cavity with a Double-Slit Qubit
- Roadmap for gallium arsenide spin qubits
- Violating Bell's inequality with remotely-connected superconducting qubits
- Bulk crystalline optomechanics
- Electrical Control of Surface Acoustic Waves
- Heralded Generation and Detection of Entangled Microwave--Optical Photon Pairs
- Parity measurement in the strong dispersive regime of circuit quantum acoustodynamics
- Stabilization of Finite-Energy Gottesman-Kitaev-Preskill States
- A perspective on hybrid quantum opto- and electromechanical systems
- Coupling a superconducting quantum circuit to a phononic crystal defect cavity
- Gigahertz phononic integrated circuits on thin-film lithium niobate on sapphire
- Epitaxial bulk acoustic wave resonators as highly coherent multi-phonon sources for quantum acoustodynamics
- Pair-cat codes: autonomous error-correction with low-order nonlinearity
- Monocrystalline free standing 3D yttrium iron garnet magnon nano resonators
- Experimental demonstration of a two-dimensional phonon cavity in the quantum regime
- Cavity magnomechanics with surface acoustic waves
- Ground State Cooling of an Ultracoherent Electromechanical System
- Engineering bilinear mode coupling in circuit QED: Theory and experiment
- Superconducting circuit quantum computing with nanomechanical resonators as storage
- Phonon number sensitive electromechanics
- A single-mode phononic wire
- One-dimensional many-body entangled open quantum systems with tensor network methods
- Thermal management and non-reciprocal control of phonon flow via optomechanics
- Sideband cooling of nearly degenerate micromechanical oscillators in a multimode optomechanical system
- Macroscopic quantum test with bulk acoustic wave resonators
- Topological nanophononic states by band inversion
- Mechanical overtone frequency combs
- Fast Quantum Interference of a Nanoparticle via Optical Potential Control
- Critical couplings in topological-insulator waveguide-resonator systems observed in elastic waves
- Nanomechanical Dissipation and Strain Engineering
- Unconventional quantum sound-matter interactions in spin-optomechanical-crystal hybrid systems
- Optomechanical crystal with bound states in the continuum
- Spatial Non-Locality Induced Non-Markovian EIT in a Single Giant Atom
- Quantum nondemolition measurements with optical parametric amplifiers for ultrafast universal quantum information processing
- Interfacing planar superconducting qubits with high overtone bulk acoustic phonons
- Optically induced phonon blockade in an optomechanical system with second-order nonlinearity
- Loss channels affecting lithium niobate phononic crystal resonators at cryogenic temperature
- Engineering electron-phonon coupling of quantum defects to a semi-confocal acoustic resonator
- Squeezing and multimode entanglement of surface acoustic wave phonons
- Quantum electromechanics of a hypersonic crystal
- Cavity-free vacuum-Rabi splitting in circuit quantum acoustodynamics
- On-chip distribution of quantum information using traveling phonons
- Displacemon electromechanics: how to detect quantum interference in a nanomechanical resonator
- Thermal Modulation of Gigahertz Surface Acoustic Waves on Lithium Niobate
- Phononic loss in superconducting resonators on piezoelectric substrates
- Fault-tolerant qubit from a constant number of components
- Optomechanical generation of a mechanical catlike state by phonon subtraction
- High-acoustic-index-contrast phononic circuits: numerical modeling
- Non-perturbative treatment of giant atoms using chain transformations
- Phononic bath engineering of a superconducting qubit
- Optimal Control of Hybrid Optomechanical Systems for Generating Non-Classical States of Mechanical Motion
- Rare-earth-mediated opto-mechanical system in the reversed dissipation regime
- Landau-Zener-Stückelberg interference in a multimode electromechanical system in the quantum regime
- High-fidelity bosonic quantum state transfer using imperfect transducers and interference
- State preparation and tomography of a nanomechanical resonator with fast light pulses
- Mechanical back-reaction effect of the dynamical Casimir emission
- Real-space characterization of cavity-coupled waveguide systems in hypersonic phononic crystals
- Hybrid integration of silicon photonic devices on lithium niobate for optomechanical wavelength conversion
- Coherent interplay between surface acoustic waves and coupled mechanical resonators: transition from plasmon-like to surface mediated coupling
- Superconducting electro-mechanics to test Diósi-Penrose effects of general relativity in massive superpositions
- High Quality Factor Surface Fabry-Perot Cavity of Acoustic Waves
- Robust readout of bosonic qubits in the dispersive coupling regime
- Multi-phonon interactions between nitrogen-vacancy centers and nanomechanical resonators
- Elastic Purcell effect
- Rapid mechanical squeezing with pulsed optomechanics
- On-chip unidirectional waveguiding for surface acoustic waves along a defect line in a triangular lattice
- Surface Piezoelectricity of (0001) Sapphire
- Quantum-enhanced radiometry via approximate quantum error correction
- Towards phonon routing: Controlling propagating acoustic waves in the quantum regime
- Single phonon source based on a giant acoustic nonlinear effect
- Phonon Interferometry for Measuring Quantum Decoherence
- Optomechanically amplified wavelength conversion in diamond microcavities
- Effective temperature pulses in open quantum systems
- Electro-optomechanical equivalent circuits for quantum transduction
- High-efficiency arbitrary quantum operation on a high-dimensional quantum system
- Surface acoustic wave resonators on thin film piezoelectric substrates in the quantum regime
- Impedance-matched High-overtone Bulk Acoustic Resonator
- Coherent Resonant Coupling between Atoms and a Mechanical Oscillator Mediated by Cavity-Vacuum Fluctuations
- Thermalization in the Quantum Ising Model - Approximations, Limits, and Beyond
- Mechanical Purcell Filters for Microwave Quantum Machines
- Sideband control of a multimode quantum bulk acoustic system
- Acoustic diamond resonators with ultra-small mode volumes
- Continuous variable multipartite vibrational entanglement
- Thermally induced entanglement of atomic oscillators
- Multiphonon transitions in a quantum electromechanical system
- Ancilla-Error-Transparent Controlled Beam Splitter Gate
- Diagrammatic Approach to Scattering of Multi-Photon States in Waveguide QED
- Nanomechanical system meets ultra-small, robust, and ultra-low-powered digital communication receiver
- Quantum versus Classical Regime in Circuit Quantum Acoustodynamics
- Testing spontaneous wavefunction collapse with quantum electromechanics
- Synchronization of a superconducting qubit to an optical field mediated by a mechanical resonator
- Realization of the degenerate parametric oscillator in electromechanical systems
- Electromechanical Quantum Simulators
- Adiabatic conversion between gigahertz quasi-Rayleigh and quasi-Love modes for phononic integrated circuits
- Thermally-induced qubit coherence in quantum electromechanics
- Unified simulation methods for quantum acoustic devices
- Trajectories without quantum uncertainties in composite systems with disparate energy spectra
- Electro-Mechanical Tuning of High-Q Bulk Acoustic Phonon Modes at Cryogenic Temperatures
- NOON state generation with phonons in acoustic wave resonators assisted by a nitrogen-vacancy-center ensemble
- High-fidelity State Transfer Between Leaky Quantum Memories
- Quantum Technology for Military Applications
- Quantum coherent microwave-optical transduction using high overtone bulk acoustic resonances
- Piezoelectric optomechanical approaches for efficient quantum microwave-to-optical signal transduction: the need for co-design
- Non-Gaussian macroscopic entanglement of motion in a hybrid electromechanical device
- Optomechanics for quantum technologies
- Dark Exciton Giant Rabi Oscillations with no External Magnetic Field
- Transmission and generation of arbitrary W states via an optomechanical interface
- An almost deterministic cooling by measurements