Optimal and Robust Quantum Metrology Using Interaction-Based Readouts
arXiv:1703.10417 · doi:10.1103/PhysRevLett.119.193601
Abstract
Useful quantum metrology requires nonclassical states with a high particle number and (close to) the optimal exploitation of the state's quantum correlations. Unfortunately, the single-particle detection resolution demanded by conventional protocols, such as spin squeezing via one-axis twisting, places severe limits on the particle number. Additionally, the challenge of finding optimal measurements (that saturate the quantum Cram{é}r-Rao bound) for an arbitrary nonclassical state limits most metrological protocols to only moderate levels of quantum enhancement. "Interaction-based readout" protocols have been shown to allow optimal interferometry \emph{or} to provide robustness against detection noise at the expense of optimality. In this Letter, we prove that one has great flexibility in constructing an optimal protocol, thereby allowing it to also be robust to detection noise. This requires the full probability distribution of outcomes in an optimal measurement basis, which is typically easily accessible and can be determined from specific criteria we provide. Additionally, we quantify the robustness of several classes of interaction-based readouts under realistic experimental constraints. We determine that optimal \emph{and} robust quantum metrology is achievable in current spin-squeezing experiments.
7 pages, 3 figures
References in corpus (20)
- 14-qubit entanglement: creation and coherence
- Nonlinear atom interferometer surpasses classical precision limit
- Quantum metrology from a quantum information science perspective
- Squeezing and entanglement in a Bose-Einstein condensate
- Fisher Information and entanglement of non-Gaussian spin states
- Quantum Metrology for Gravitational Wave Astronomy
- Scalable Spin Squeezing for Quantum-Enhanced Magnetometry with Bose-Einstein Condensates
- An avalanche-photodiode-based photon-number-resolving detector
- Phase detection at the quantum limit with multi-photon Mach-Zehnder interferometry
- Spin squeezing in a bimodal condensate: spatial dynamics and particle losses
- Sagnac Interferometry Using Bright Matter-Wave Solitons
- Optimal phase measurements with bright and vacuum-seeded SU(1,1) interferometers
- Raman-induced limits to efficient squeezing in optical fibers
- Improving the phase super-sensitivity of squeezing-assisted interferometers by squeeze factor unbalancing
- Simulations and Experiments on Polarisation Squeezing in Optical Fibre
- Squeezed-light-enhanced atom interferometry below the standard quantum limit
- Information recycling beam-splitters for atom-interferometry with enhanced sensitivity
- Fisher information of a squeezed-state interferometer with a finite photon-number resolution
- Heisenberg-limited metrology with information recycling
- Heisenberg-limited metrology with a squeezed vacuum state, three-mode mixing, and information recycling
Cited by in corpus (80)
- Quantum-enhanced sensing of displacements and electric fields with large trapped-ion crystals
- Time-Reversal-Based Quantum Metrology with Many-Body Entangled States
- Quantum Variational Optimization of Ramsey Interferometry and Atomic Clocks
- Entanglement-enhanced quantum metrology: from standard quantum limit to Heisenberg limit
- Quantum-enhanced sensing using non-classical spin states of a highly magnetic atom
- Improving Metrology with Quantum Scrambling
- Optimal Gaussian measurements for phase estimation in single-mode Gaussian metrology
- Improving cold-atom sensors with quantum entanglement: Prospects and challenges
- Combining critical and quantum metrology
- Quantum metrology with imperfect measurements
- Ramsey interferometry with generalized one-axis twisting echoes
- Achieving Heisenberg-limited metrology with spin cat states via interaction-based readout
- Phase magnification by two-axis countertwisting for detection noise robust interferometry
- Enhanced magnetic sensitivity with non-gaussian quantum fluctuations
- Using Interaction-Based Readouts to Approach the Ultimate Limit of Detection Noise Robustness for Quantum-Enhanced Metrology in Collective Spin Systems
- Entanglement enhanced metrology with quantum many-body scars
- A Machine-Designed Sensor to Make Optimal Use of Entanglement-Generating Dynamics for Quantum Sensing
- Robustifying Twist-and-Turn Entanglement with Interaction-Based Readout
- Non-Markovian Sensing of a Quantum Reservoir
- Searching for Signatures of Quantum Gravity in Quantum Gases
- Quantum Noise in Bright Soliton Matterwave Interferometry
- Quantum parameter estimation in a dissipative environment
- Non-Gaussian Precision Metrology via Driving through Quantum Phase Transitions
- Phase space geometry and optimal state preparation in quantum metrology with collective spins
- Entanglement-Enhanced Optical Atomic Clocks
- Dissipative superradiant spin amplifier for enhanced quantum sensing
- Optimal Matterwave Gravimetry
- Optimal Control for Quantum Metrology via Pontryagin's principle
- Identifying and harnessing dynamical phase transitions for quantum-enhanced sensing
- A cavity-QED protocol for precise field sensing in the optical domain
- Efficient Generation of Spin Cat States
- Squeezing and overcoming the Heisenberg scaling with spin-orbit coupled quantum gases
- Optimal protocols for quantum metrology with noisy measurements
- Criticality-enhanced quantum sensor at finite temperature
- Threshold for a discrete-variable sensor of quantum reservoirs
- Heisenberg-limited spin squeezing in coupled spin systems
- Quantum metrology with a continuous-variable system
- Continuous-variable quantum sensing of a dissipative reservoir
- Squeezed superradiance enables robust entanglement-enhanced metrology even with highly imperfect readout
- Double-port measurements for robust quantum optical metrology
- Many-Body Entanglement in Short-Range Interacting Fermi Gases for Metrology
- Controlling chaos in the quantum regime using adaptive measurements
- Quantum metrology with a squeezed Kerr oscillator
- Clock precision beyond the Standard Quantum Limit at level
- Quantum advantage of time-reversed ancilla-based metrology of absorption parameters
- Asymptotic optimality of twist-untwist protocols for Heisenberg scaling in atomic interferometry
- Generating Macroscopic Superpositions with Interacting Bose-Einstein Condensates: Multi-Mode Speed-Ups and Speed Limits
- Enhancing Sensitivity of an Atom Interferometer to the Heisenberg Limit using Increased Quantum Noise
- Spin Squeezing with Arbitrary Quadratic Collective-Spin Interaction
- Optimal atomic interferometry robust to detection noise using spin-1 atomic condensates
- Many-body quantum lock-in amplifier
- Cyclic nonlinear interferometry with entangled non-Gaussian spin states
- Quantum metrology based on symmetry-protected adiabatic transformation: Imperfection, finite time duration, and dephasing
- Signatures of Quantum Gravity in the Gravitational Self-Interaction of Photons
- Fast and Accurate Greenberger-Horne-Zeilinger Encoding Using All-to-all Interactions
- Optimizing one-axis twists for variational Bayesian quantum metrology
- Entanglement-enhanced test proposal for local Lorentz-symmetry violation via spinor atoms
- Simultaneous measurement of DC and AC magnetic fields at the Heisenberg limit
- Optimal Ramsey interferometry with echo protocols based on one-axis twisting
- Achieving Heisenberg scaling by probe-ancilla interaction in quantum metrology
- Enhancing Quantum Metrology by Quantum Resonance Dynamics
- Efficient two-mode interferometers with spinor Bose-Einstein condensates
- Parametrized protocol achieving the Heisenberg limit in the optical domain via dispersive atom-light interactions
- Non-stabilizerness in quantum-enhanced metrological protocols
- Enhancing Dynamic Range of Sub-Quantum-Limit Measurements via Quantum Deamplification
- Mass-energy equivalence in gravitationally bound quantum states of the neutron
- Symmetry: a fundamental resource for quantum coherence and metrology
- Saturating the one-axis twisting quantum Cramér-Rao bound with a total spin readout
- Quantum Metrology via Floquet-Engineered Two-axis Twisting and Turn Dynamics
- Quantum sensing with ultracold simulators in lattice and ensemble systems: a review
- Atom-light entanglement for precise field sensing in the optical domain
- More buck-per-shot: Why learning trumps mitigation in noisy quantum sensing
- Quantum Vector DC Magnetometry via Selective Phase Accumulation
- Beating standard quantum limit via two-axis magnetic susceptibility measurement
- Low-temperature Quantum Metrology Enhanced by Strong Couplings
- Multiparameter quantum metrology using strongly interacting spin systems
- Bayesian Frequency Metrology with Optimal Ramsey Interferometry in Optical Atomic Clocks
- Scaling laws for the sensitivity enhancement of non-Gaussian spin states
- Delta-kick Squeezing
- Tailored generation of quantum states in an entangled spinor interferometer to overcome detection noise