Deterministic Squeezed States with Joint Measurements and Feedback
arXiv:1512.02150 · doi:10.1103/PhysRevLett.116.093602
Abstract
We demonstrate the creation of entangled, spin-squeezed states using a collective, or joint, measurement and real-time feedback. The pseudospin state of an ensemble of laser-cooled Rb atoms is deterministically driven to a specified population state with angular resolution that is a factor of 5.5(8) [7.4(6)~dB] in variance below the standard quantum limit for unentangled atoms --- comparable to the best enhancements using only unitary evolution. Without feedback, conditioning on the outcome of the joint premeasurement, we directly observe up to 59(8) times [17.7(6)~dB] improvement in quantum phase variance relative to the standard quantum limit for atoms. This is one of the largest reported entanglement enhancements to date in any system.
Main Text with Supporting Material, 15 pages, 8 figures
References in corpus (10)
- 14-qubit entanglement: creation and coherence
- Quantum teleportation between light and matter
- Squeezing and entanglement in a Bose-Einstein condensate
- Experimental Quantum Computations on a Topologically Encoded Qubit
- Long Phase Coherence Time and Number Squeezing of two Bose-Einstein Condensates on an Atom Chip
- Scalable Spin Squeezing for Quantum-Enhanced Magnetometry with Bose-Einstein Condensates
- Detecting multiparticle entanglement of Dicke states
- Unconditional quantum-noise suppression via measurement-based quantum feedback
- A low phase noise microwave source for atomic spin squeezing experiments in 87Rb
- Reducing Collective Quantum State Rotation Errors with Reversible Dephasing
Cited by in corpus (150)
- Quantum sensing
- Quantum metrology with nonclassical states of atomic ensembles
- Quantum spin dynamics and entanglement generation with hundreds of trapped ions
- Entanglement Certification From Theory to Experiment
- Entanglement-Enhanced Optical Atomic Clock
- Exploring gravity with the MIGA large scale atom interferometer
- Deterministic entanglement generation from driving through quantum phase transitions
- Matter-wave Atomic Gradiometer Interferometric Sensor (MAGIS-100)
- Quantum state magnification
- Quantum-Limited Atomic Receiver in the Electrically Small Regime
- Time-Reversal-Based Quantum Metrology with Many-Body Entangled States
- Measurements with prediction and retrodiction on the collective spin of 10^{11} atoms beat the standard quantum limit
- Beating the classical precision limit with spin-1 Dicke state of more than 10000 atoms
- Testing gravity with cold atom interferometry: Results and prospects
- Enhancing spin-phonon and spin-spin interactions using linear resources in a hybrid quantum system
- ELGAR -- a European Laboratory for Gravitation and Atom-interferometric Research
- Near-Unitary Spin Squeezing in Yb
- Entanglement-Enhanced Matter-Wave Interferometry in a High-Finesse Cavity
- Long-lived Bell states in an array of optical clock qubits
- Entanglement-enhanced quantum metrology: from standard quantum limit to Heisenberg limit
- Quantum-enhanced sensing using non-classical spin states of a highly magnetic atom
- Metrological Nonlinear Squeezing Parameter
- Quantum amplification of boson-mediated interactions
- Quantum-enhanced sensing on an optical transition via emergent collective quantum correlations
- Metrological Detection of Multipartite Entanglement from Young Diagrams
- Robust spin squeezing via photon-mediated interactions on an optical clock transition
- Spin Squeezing by Rydberg Dressing in an Array of Atomic Ensembles
- Improving cold-atom sensors with quantum entanglement: Prospects and challenges
- Squeezing on momentum states for atom interferometry
- Correlation engineering via non-local dissipation
- Beating the Standard Quantum Limit under Ambient Conditions with Solid-State Spins
- Collective Spin-Light and Light-Mediated Spin-Spin Interactions in an Optical Cavity
- Preparation of ultracold atom clouds at the shot noise level
- Prospects and challenges for squeezing-enhanced optical atomic clocks
- Metrological characterisation of non-Gaussian entangled states of superconducting qubits
- Splitting the Raman beamsplitter
- An Atom Interferometer inside a Hollow-core Photonic Crystal Fiber
- Phase magnification by two-axis countertwisting for detection noise robust interferometry
- Inertial quantum sensors using light and matter
- Dicke superradiance in ordered arrays of multilevel atoms
- Mechanical squeezing via fast continuous measurement
- Strong Spin Squeezing Induced by Weak Squeezing of Light inside a Cavity
- Demonstration of the Jaynes-Cummings ladder with Rydberg-dressed atoms
- Cavity-QED determination of the natural linewidth of the Sr millihertz clock transition with 30Hz resolution
- Noisy atomic magnetometry in real time
- Realistic simulations of spin squeezing and cooperative coupling effects in large ensembles of interacting two-level systems
- Impact of Non-Unitary Spin Squeezing on Atomic Clock Performance
- Entanglement-Enhanced Optical Atomic Clocks
- Spin squeezing and many-body dipolar dynamics in optical lattice clocks
- Site-resolved imaging of single atoms with a Faraday quantum gas microscope
- Dissipative superradiant spin amplifier for enhanced quantum sensing
- A marginally stable optical resonator for enhanced atom interferometry
- PT-symmetric feedback induced linewidth narrowing
- Experimentally reducing the quantum measurement back-action in work distributions by a collective measurement
- Many-Body Open Quantum Systems
- Engineering Graph States of Atomic Ensembles by Photon-Mediated Entanglement
- Subradiant-to-Subradiant Phase Transition in the Bad Cavity Laser
- Entanglement and extreme spin squeezing of unpolarized states
- Continuous real-time tracking of a quantum phase below the standard quantum limit
- Cavity-assisted measurement and coherent control of collective atomic spin oscillators
- Retrodiction beyond the Heisenberg uncertainty relation
- Entanglement and extreme planar spin squeezing
- Demonstration of a free space rubidium atomic clock with noise below the quantum projection limit
- Geometrically asymmetric optical cavity for strong atom-photon coupling
- A cavity-QED protocol for precise field sensing in the optical domain
- Towards Improved Quantum Simulations and Sensing with Trapped 2D Ion Crystals via Parametric Amplification
- Entanglement-enhanced phase estimation without prior phase information
- Cavity-enhanced non-destructive detection of atoms for an optical lattice clock
- Spatially Homogeneous Entanglement for Matter-Wave Interferometry Created with Time-Averaged Measurements
- Dicke State Generation and Extreme Spin Squeezing via Rapid Adiabatic Passage
- Measuring the dispersive frequency shift of a rectangular microwave cavity induced by an ensemble of Rydberg atoms
- Locally optimal measurement-based quantum feedback with application to multi-qubit entanglement generation
- Spin-squeezed atomic crystal
- Extreme spin squeezing in the steady state of a generalized Dicke model
- Cooling and state preparation in an optical lattice via Markovian feedback control
- Quantum Enhanced Cavity QED Interferometer with Partially Delocalized Atoms in Lattices
- Crafting the dynamical structure of synchronization by harnessing bosonic multilevel cavity QED
- Heisenberg-limited spin squeezing in coupled spin systems
- Observing spin-squeezed states under spin-exchange collisions for a second
- Dispersive detection of radio-frequency dressed states
- Generating GHZ states with squeezing and post-selection
- Coherent vs. measurement-based feedback for controlling a single qubit
- Quantum Fluctuation Dynamics of Dispersive Superradiant Pulses in a Hybrid Light-Matter System
- Feedback-stabilized dynamical steady states in the Bose-Hubbard model
- Technologies for the ELGAR large scale atom interferometer array
- Raman transitions driven by phase-modulated light in a cavity atom interferometer
- Squeezing multilevel atoms in dark states via cavity superradiance
- Arbitrary digital pulse sequence generator with delay-loop timing
- Clock precision beyond the Standard Quantum Limit at level
- Faraday imaging induced squeezing of a double-well Bose-Einstein condensate
- Analysis of spin-squeezing generation in cavity-coupled atomic ensembles with continuous measurements
- Retrieval of cavity-generated atomic spin-squeezing after free-space release
- Enhanced cooperativity for quantum-nondemolition-measurement--induced spin squeezing of atoms coupled to a nanophotonic waveguide
- 30-Fold Increase in Atom-Cavity Coupling Using a Parabolic Ring Cavity
- Characterization of Errors in Interferometry with Entangled Atoms
- Quantum-enhanced differential atom interferometers and clocks with spin-squeezing swapping
- Quantum resonant optical bistability with a narrow atomic transition: bistability phase diagram in the bad cavity regime
- Enhancing test precision for local Lorentz symmetry violation with entanglement
- Efficient preparation of Dicke states
- Deterministic preparation of supersinglets with collective spin projections
- Cavity-enhanced detection of spin polarization in a microfabricated atomic vapor cell
- Universal Control of Symmetric States Using Spin Squeezing
- Spin squeezing in symmetric multiqubit states with two distinct Majorana spinors
- Entanglement classification and \emph{non-k}-separability certification via Greenberger-Horne-Zeilinger-class fidelity
- Alternatives of entanglement depth and metrological entanglement criteria
- Enhancing the force sensitivity of squeezed light optomechanical interferometer
- Symmetry based efficient simulation of dissipative quantum many-body dynamics in subwavelength quantum emitter arrays
- Trapping Yb Atoms into a One-Dimensional Optical Lattice with a Small Waist
- Replacing measurement feedback with coherent feedback for quantum state preparation
- Multi-partite entanglement detection with non symmetric probing
- Renormalization group analysis of near-field induced dephasing of optical spin waves in an atomic medium
- Canceling the cavity length induced phase noise in an optical ring cavity for phase shift measurement and spin squeezing
- Dispersive detection of atomic ensembles in the presence of strong lensing
- Spin Squeezing with Itinerant Dipoles: A Case for Shallow Lattices
- Quantum Non-Demolition Measurement on the Spin Precession of Laser-Trapped Yb Atoms
- Parametrized protocol achieving the Heisenberg limit in the optical domain via dispersive atom-light interactions
- Driven-dissipative four-mode squeezing of multilevel atoms in an optical cavity
- Quantum metrology enhanced by the spin interaction in a generalized Tavis-Cummings model
- Weak-Measurement-Induced Heating in Bose-Einstein Condensates
- Collective self-trapping of atoms in a cavity
- Modeling local decoherence of a spin ensemble using a generalized Holstein-Primakoff mapping to a bosonic mode
- Control limit on quantum state preparation under decoherence
- Atom-light entanglement for precise field sensing in the optical domain
- Short-time expansion of Heisenberg operators in open collective quantum spin systems
- Preparing Quantum States by Measurement-feedback Control with Bayesian Optimization
- Coupling atoms to cavities with narrow linewidth optical transitions: Applications to frequency metrology
- Dynamical multipartite entanglement in a generalized Tavis-Cummings model with XY spin interaction
- Quantum sensors with matter waves for GW observation
- Conditional Entanglement Amplification via Non-Hermitian Superradiant Dynamics
- Precision measurement for open systems by non-hermitian linear response
- Decoherence induced spin squeezing signatures in Greenberger-Horne-Zeilinger and W states
- Lieb-Mattis states for robust entangled differential phase sensing
- Optimizing lossy state preparation for quantum sensing using Hamiltonian engineering
- Linear and continuous variable spin-wave processing using a cavity-coupled atomic ensemble
- Improving the Q factor of an optical atomic clock using quantum non-demolition measurement
- The quantum state of light in collective spontaneous emission
- Staircase in magnetization and entanglement entropy of spin squeezed condensates
- Cascaded Multiparameter Quantum Metrology
- Utilizing machine learning to improve the precision of fluorescence imaging of cavity-generated spin squeezed states
- Exact Many-body Quantum Dynamics in One-Dimensional Baths via Collective Spins
- Quantum nature of gravity in a Bose-Einstein condensate
- Symmetry and Topology of Successive Quantum Feedback Control
- Parameter estimation with one- and two-time measurements on the emission field of the boundary time crystal
- Bounding fidelity in quantum feedback control: theory and applications to Dicke state preparation
- Measurement-based preparation of non-Markovian and multimode mechanical states
- Feedback cooling of fermionic atoms in optical lattices
- Superradiant Interactions for Relic Detection with Entangled Nuclear Spins
- Quantum feedback for measurement and control
- Scaling laws for the sensitivity enhancement of non-Gaussian spin states
- Application of simultaneous and continuous measurement of noncommutative observables: Preparation of the pure ideal quadrature-squeezed state by feedback control