Multiparameter critical quantum metrology with impurity probes
arXiv:2311.16931 · doi:10.1088/2058-9565/ad438d
Abstract
Quantum systems can be used as probes in the context of metrology for enhanced parameter estimation. In particular, the delicacy of critical systems to perturbations can make them ideal sensors. Arguably the simplest realistic probe system is a spin-1/2 impurity, which can be manipulated and measured in-situ when embedded in a fermionic environment. Although entanglement between a single impurity probe and its environment produces nontrivial many-body effects, criticality cannot be leveraged for sensing. Here we introduce instead the two-impurity Kondo (2IK) model as a novel paradigm for critical quantum metrology, and examine the multiparameter estimation scenario at finite temperature. We explore the full metrological phase diagram numerically and obtain exact analytic results near criticality. Enhanced sensitivity to the inter-impurity coupling driving a second-order phase transition is evidenced by diverging quantum Fisher information (QFI) and quantum signal-to-noise ratio (QSNR). However, with uncertainty in both coupling strength and temperature, the multiparameter QFI matrix becomes singular -- even though the parameters to be estimated are independent -- resulting in vanishing QSNRs. We demonstrate that by applying a known control field, the singularity can be removed and measurement sensitivity restored. For general systems, we show that the degradation in the QSNR due to uncertainties in another parameter is controlled by the degree of correlation between the unknown parameters.
19 pages, 9 figures
References in corpus (89)
- Quantum sensing
- Quantum-enhanced measurements: beating the standard quantum limit
- Electron transport through double quantum dots
- The numerical renormalization group method for quantum impurity systems
- Quantum metrology from a quantum information science perspective
- Ground state overlap and quantum phase transitions
- The elusive Heisenberg limit in quantum enhanced metrology
- Quantum Fisher information matrix and multiparameter estimation
- Quantum critical scaling of the geometric tensors
- Non-Hermitian Topological Sensors
- Observation of the two-channel Kondo effect
- Sum-rule Conserving Spectral Functions from the Numerical Renormalization Group
- Quantum criticality as a resource for quantum estimation
- Individual quantum probes for optimal thermometry
- Critical Quantum metrology with a finite-component quantum phase transition
- An Invitation to Quantum Incompatibility
- Fidelity susceptibility, scaling, and universality in quantum critical phenomena
- Quantum Critical Scaling of Fidelity Susceptibility
- Dynamic framework for criticality-enhanced quantum sensing
- Enhanced metrology at the critical point of a many-body Rydberg atomic system
- Criticality-Enhanced Quantum Sensing via Continuous Measurement
- Quantum critical metrology
- Quantum metrology in Lipkin-Meshkov-Glick critical systems
- Quantum Monte Carlo simulations of fidelity at magnetic quantum phase transitions
- Tunable Quantum Criticality and Super-ballistic Transport in a `Charge' Kondo Circuit
- At the limits of criticality-based quantum metrology: apparent super-Heisenberg scaling revisited
- Quantum Metrology with Strongly Interacting Spin Systems
- Quantum Limits of Thermometry
- In situ thermometry of a cold Fermi gas via dephasing impurities
- Two-Impurity Kondo Effect in Double-Quantum-Dot Systems - Effect of Interdot Kinetic Exchange Coupling
- Negativity as the Entanglement Measure to Probe the Kondo Regime in the Spin-Chain Kondo Model
- Critical parametric quantum sensing
- Dynamical phase transitions as a resource for quantum enhanced metrology
- Quantum criticality in a double quantum-dot system
- Fidelity analysis of topological quantum phase transitions
- Entanglement probe of two-impurity Kondo physics in a spin chain
- Quantum sensing close to a dissipative phase transition: symmetry breaking and criticality as metrological resources
- A quantum transducer using a parametric driven-dissipative phase transition
- Precision thermometry and the quantum speed limit
- An order parameter for impurity systems at quantum criticality
- Continuous sensing and parameter estimation with the boundary time-crystal
- Achieving the Landau bound to precision of quantum thermometry in systems with vanishing gap
- Exact results for fidelity susceptibility of the quantum Ising model: The interplay between parity, system size, and magnetic field
- Fractional entropy of multichannel Kondo systems from conductance-charge relations
- Generalized Wilson Chain for solving multichannel quantum impurity problems
- Universal low-temperature crossover in two-channel Kondo models
- Quantum metrology with boundary time crystals
- Two-channel Kondo physics in two-impurity Kondo models
- Combining critical and quantum metrology
- Quantum transition-edge detectors
- Driving enhanced quantum sensing in partially accessible many-body systems
- Critical Quantum Metrology in the Non-Linear Quantum Rabi Model
- Dynamical decoupling based quantum sensing: Floquet spectroscopy
- Critical Quantum Metrology with Fully-Connected Models: From Heisenberg to Kibble-Zurek Scaling
- Quantum simulation of an exotic quantum critical point in a two-site charge Kondo circuit
- Exact crossover Green function in the two-channel and two-impurity Kondo models
- Information complementarity: A new paradigm for decoding quantum incompatibility
- Interleaved numerical renormalization group as an efficient multiband impurity solver
- Strong quantum metrological limit from many-body physics
- Critical quantum metrology assisted by real-time feedback control
- Adiabatic critical quantum metrology cannot reach the Heisenberg limit even when shortcuts to adiabaticity are applied
- Thermometry of Strongly Correlated Fermionic Quantum Systems using Impurity Probes
- Entropy measurement of a strongly coupled quantum dot
- Quantum parameter estimation affected by unitary disturbance
- Sequential measurements for quantum-enhanced magnetometry in spin chain probes
- Criticality-enhanced quantum sensing in ferromagnetic Bose-Einstein condensates: role of readout measurement and detection noise
- Super-Heisenberg scaling in Hamiltonian parameter estimation in the long-range Kitaev chain
- Exponential precision by reaching a quantum critical point
- Current fidelity susceptibility and conductivity in one-dimensional lattice models with open and periodic boundary conditions
- Multi-spin probes for thermometry in the strong-coupling regime
- Integrable quantum many-body sensors for AC field sensing
- Stark localization as a resource for weak-field sensing with super-Heisenberg precision
- Optimality and Noise-Resilience of Critical Quantum Sensing
- Mass sensing by quantum criticality
- Localization Driven Quantum Sensing
- In and out of equilibrium quantum metrology with mean-field quantum criticality
- Criticality-Enhanced Quantum Sensing in the Anisotropic Quantum Rabi Model
- Enhancement of Quantum Sensing in a Cavity Optomechanical System around Quantum Critical Point
- Criticality-enhanced quantum sensor at finite temperature
- Long-range interacting Stark many-body probes with Super-Heisenberg precision
- Strongly coupled fermionic probe for nonequilibrium thermometry
- Limits of noisy quantum metrology with restricted quantum controls
- Probe thermometry with continuous measurements
- Heisenberg scaling with classical long-range correlations
- Multi-parameter quantum estimation of single- and two-mode pure Gaussian states
- Quantum multiparameter estimation enhanced by a topological phase transition
- Characterization of partially accessible anisotropic spin chains in the presence of anti-symmetric exchange
- Critical quantum metrology robust against dissipation and non-adiabaticity
- Measuring two temperatures using a single thermometer
Cited by in corpus (23)
- Review: Quantum Metrology and Sensing with Many-Body Systems
- Criticality-Enhanced Quantum Sensing with a Parametric Superconducting Resonator
- Critical metrology of minimally accessible anisotropic spin chains
- Collective quantum enhancement in critical quantum sensing
- Uncertain Quantum Critical Metrology: From Single to Multi Parameter Sensing
- Overcoming Quantum Metrology Singularity through Sequential Measurements
- Enhancing precision thermometry with nonlinear qubits
- Critical quantum metrology in a stabilized two-photon Rabi model
- Metrological symmetries in singular quantum multi-parameter estimation
- Nanoscale single-electron box with a floating lead for quantum sensing: modelling and device characterization
- Multicritical quantum sensors driven by symmetry-breaking
- Quantum thermometry for ultralow temperatures using probe and ancilla qubit chains
- Topological quantum thermometry
- Critical quantum metrology robust against dissipation and non-adiabaticity
- Single-qubit probes for temperature estimation in the presence of collective baths
- Critical Quantum Sensing: a tutorial on parameter estimation near quantum phase transitions
- From dynamical to steady-state many-body metrology: Precision limits and their attainability with two-body interactions
- Globalized Nonlinear Critical Quantum Metrology by Two-photon Rabi-Stark model
- Multipartite Entanglement and Quantum Sensing in a Spin-5/2 Heisenberg Molecular Iron(III) Triangle
- Upgrading Quantum Metrology by Combined Sensitivity Resources in Mixed Linear-Nonlinear Light-Matter Interactions with Bias Field
- Unsupervised Learning of Effective Quantum Impurity Models
- Sensitivity Bounds of Multiparameter Metrology at Thermal Equilibrium
- Phonon-induced two-axis spin squeezing with decoherence reduction in hybrid spin-optomechanical system