Restoring Heisenberg scaling in noisy quantum metrology by monitoring the environment
arXiv:1803.05891 · doi:10.22331/q-2018-12-03-110
Abstract
We study quantum frequency estimation for qubits subjected to independent Markovian noise, via strategies based on time-continuous monitoring of the environment. Both physical intuition and an extended convexity property of the quantum Fisher information (QFI) suggest that these strategies are more effective than the standard ones based on the measurement of the unconditional state after the noisy evolution. Here we focus on initial GHZ states and on parallel or transverse noise. For parallel noise, i.e. dephasing, we show that perfectly efficient time-continuous photo-detection allows to recover the unitary (noiseless) QFI, and thus to obtain a Heisenberg scaling for every value of the monitoring time. For finite detection efficiency, one falls back to the noisy standard quantum limit scaling, but with a constant enhancement due to an effective reduced dephasing. Also in the transverse noise case we obtain that the Heisenberg scaling is recovered for perfectly efficient detectors, and we find that both homodyne and photo-detection based strategies are optimal. For finite detectors efficiency, our numerical simulations show that, as expected, an enhancement can be observed, but we cannot give any conclusive statement regarding the scaling. We finally describe in detail the stable and compact numerical algorithm that we have developed in order to evaluate the precision of such time-continuous estimation strategies, and that may find application in other quantum metrology schemes.
12 pages, 4 figures; Accepted for publication in Quantum
References in corpus (24)
- A Straightforward Introduction to Continuous Quantum Measurement
- Using entanglement against noise in quantum metrology
- Achieving the Heisenberg limit in quantum metrology using quantum error correction
- Quantum Kalman Filtering and the Heisenberg Limit in Atomic Magnetometry
- Finding the Kraus decomposition from a master equation and vice versa
- Bayesian parameter inference from continuously monitored quantum systems
- Efficient Quantum Filtering for Quantum Feedback Control
- General Non-Markovian structure of Gaussian Master and Stochastic Schrödinger Equations
- Fundamental limits to frequency estimation: A comprehensive microscopic perspective
- Ultimate limits for quantum magnetometry via time-continuous measurements
- Precision Limits in Quantum Metrology with Open Quantum Systems
- Weak-value amplification as an optimal metrological protocol
- Spatial noise filtering through error correction for quantum sensing
- Quantum Metrology: Extended Convexity of Quantum Fisher Information
- Fisher information and asymptotic normality in system identification for quantum Markov chains
- Single shot parameter estimation via continuous quantum measurement
- On the optimal feedback control of linear quantum systems in the presence of thermal noise
- Multi-parameter estimation along quantum trajectories with Sequential Monte Carlo methods
- Heisenberg versus standard scaling in quantum metrology with Markov generated states and monitored environment
- Parameter estimation by multi-channel photon counting
- Noise-dependent optimal strategies for quantum metrology
- Experimental ancilla-assisted phase-estimation in a noisy channel
- Noisy frequency estimation with noisy probes
- Optimal waveform estimation for classical and quantum systems via time-symmetric smoothing
Cited by in corpus (72)
- Open quantum systems with local and collective incoherent processes: Efficient numerical simulation using permutational invariance
- A perspective on multiparameter quantum metrology: from theoretical tools to applications in quantum imaging
- Criticality-Enhanced Quantum Sensing via Continuous Measurement
- Current fluctuations in open quantum systems: Bridging the gap between quantum continuous measurements and full counting statistics
- Graph States as a Resource for Quantum Metrology
- Global sensing and its impact for quantum many-body probes with criticality
- Review: Quantum Metrology and Sensing with Many-Body Systems
- Optimal Scheme for Quantum Metrology
- Noisy quantum metrology enhanced by continuous nondemolition measurement
- Retrieving ideal precision in noisy quantum optical metrology
- Continuous sensing and parameter estimation with the boundary time-crystal
- Asymptotic theory of quantum channel estimation
- Quantum metrology with boundary time crystals
- Calibration of quantum sensors by neural networks
- Learning feedback control strategies for quantum metrology
- On the discontinuity of the quantum Fisher information for quantum statistical models with parameter dependent rank
- Efficient Information Retrieval for Sensing via Continuous Measurement
- Floquet Engineering to Overcome No-Go Theorem of Noisy Quantum Metrology
- Optimal approximate quantum error correction for quantum metrology
- Sequential measurements for quantum-enhanced magnetometry in spin chain probes
- Continuous-variable entanglement dynamics in Lorentzian environment
- Criticality-enhanced Electric Field Gradient Sensor with Single Trapped Ions
- Quantum metrology in the noisy intermediate-scale quantum era
- A pedagogical introduction to continuously monitored quantum systems and measurement-based feedback
- Multiparameter Quantum Estimation Theory in Quantum Gaussian states
- Non-Orthogonal Bases for Quantum Metrology
- Adaptive measurement filter: efficient strategy for optimal estimation of quantum Markov chains
- Optimal protocols for quantum metrology with noisy measurements
- Long-range interacting Stark many-body probes with Super-Heisenberg precision
- Quantum Jump Metrology
- Exponentially-enhanced quantum sensing with many-body phase transitions
- Noisy quantum gyroscope
- Completely Positive Quantum Trajectories with Applications to Quantum State Smoothing
- Decay of quantum sensitivity due to three-body loss in Bose-Einstein condensates
- Probe thermometry with continuous measurements
- Nonlinearity-enhanced quantum sensing in Stark probes
- Nonlocality enhanced precision in quantum polarimetry via entangled photons
- Noisy atomic magnetometry with Kalman filtering and measurement-based feedback
- Achieving metrological limits using ancilla-free quantum error-correcting codes
- Quantum frequency estimation with conditional states of continuously monitored independent dephasing channels
- Metrological advantage at finite temperature for Gaussian phase estimation
- Fisher information rates in sequentially measured quantum systems
- Time-local optimal control for parameter estimation in the Gaussian regime
- Precision bounds for multiple currents in open quantum systems
- A tensor network approach to sensing quantum light-matter interactions
- Restoring metrological quantum advantage of measurement precision in noisy scenario
- Fundamental noisy multiparameter quantum bounds
- Improving quantum parameter estimation by monitoring quantum trajectories
- Multicritical quantum sensors driven by symmetry-breaking
- Fisher information susceptibility for multiparameter quantum estimation
- Enhancing Quantum Metrology by Quantum Resonance Dynamics
- Relations between quantum metrology and criticality in general su(1, 1) systems
- Designing open quantum systems for enabling quantum enhanced sensing through classical measurements
- Quantum Estimation of the Stokes Vector Rotation for a General Polarimetric Transformation
- Heisenberg-Limited Spin-Mechanical Gravimetry
- Enhancing precision of atomic clocks by tuning disorder in accessories
- Exploiting nonequilibrium phase transitions and strong symmetries for continuous measurement of collective observables
- Parameter estimation for quantum jump unraveling
- Noise-assisted and monitoring-enhanced quantum bath tagging
- Quantum jump metrology in a two-cavity network
- Achieving Heisenberg limit under General Markov Noise without Ancilla
- Quantum sensing of even- versus odd-body interactions
- Quantum multiphase estimation
- Monitoring the energy of a cavity by observing the emission of a repeatedly excited qubit
- Daemonic ergotropy of Gaussian quantum states and the role of measurement-induced purification via general-dyne detection
- Current-based metrology with two-terminal mesoscopic conductors
- Stochastic Schrödinger Equations for Quantum Reverse Diffusion
- Estimating quantum Markov chains using coherent absorber post-processing and pattern counting estimator
- Lindblad estimation with fast and precise quantum control
- Current fluctuations in nonequilibrium open quantum systems beyond weak coupling: a reaction coordinate approach
- Boosting Work Extraction in Quantum Batteries via Continuous Environment Monitoring
- Gaussian quantum metrology in a dissipative environment