Multiparameter quantum metrology with postselection measurements
arXiv:1811.08046 · doi:10.1063/5.0024555
Abstract
We analyze simultaneous quantum estimations of multiple parameters with postselection measurements in terms of a tradeoff relation. The system, or a sensor, is characterized by a set of parameters, interacts with a measurement apparatus (MA), and then is postselected onto a set of orthonormal final states. Measurements of the MA yield an estimation of the parameters. We first derive classical and quantum Cramér-Rao lower bounds and then discuss their archivable condition and the tradeoffs in the postselection measurements in general, including the case when a sensor is in mixed state. Its whole information can, in principle, be obtained via the MA which is not possible without postselection. We, then, apply the framework to simultaneous measurements of phase and its fluctuation as an example.
25 pages, 2 figures
References in corpus (26)
- Ultrasensitive Beam Deflection Measurement via Interferometric Weak Value Amplification
- Magnetic field sensing beyond the standard quantum limit using 10-spin NOON states
- Weak Measurements of Light Chirality with a Plasmonic Slit
- Optimal measurements for simultaneous quantum estimation of multiple phases
- Multi-parameter estimation beyond Quantum Fisher Information
- Optimal estimation of joint parameters in phase space
- Weak Value Amplification Can Outperform Conventional Measurement in the Presence of Detector Saturation
- Simple expression for the quantum Fisher information matrix
- Measurement of damping and temperature: Precision bounds in Gaussian dissipative channels
- Optimal measurements for quantum multiparameter estimation with general states
- Estimation of unitary quantum operations
- Modular values and weak values of quantum observables
- Power-recycled weak-value-based metrology
- Multiparameter quantum estimation of noisy phase shifts
- Weak-value amplification as an optimal metrological protocol
- Universality of local weak interactions and its application for interferometric alignment
- Quantum sensors based on weak-value amplification cannot overcome decoherence
- Achieving Heisenberg-scaling precision with projective measurement on single photons
- Heisenberg scaling with weak measurement: A quantum state discrimination point of view
- Multiparameter quantum estimation under dephasing noise
- Quantum limit for laser interferometric gravitational wave detectors from optical dissipation
- High Precision Multi-parameter Weak Measurement with Hermite-Gaussian Pointer
- Simultaneous measurement of multiple parameters of a subwavelength structure based on the weak value formalism
- Fundamental quantum limits of multi-carrier optomechanical sensors
- Modular-value-based metrology with spin coherent pointers
- Joint estimation of phase and phase diffusion for quantum metrology