Learning feedback control strategies for quantum metrology
We consider the problem of frequency estimation for a single bosonic field evolving under a
squeezing Hamiltonian and continuously monitored via homodyne detection. In particular …
squeezing Hamiltonian and continuously monitored via homodyne detection. In particular …
Qubit models of weak continuous measurements: Markovian conditional and open-system dynamics
In this paper we approach the theory of continuous measurements and the associated
unconditional and conditional (stochastic) master equations from the perspective of quantum …
unconditional and conditional (stochastic) master equations from the perspective of quantum …
Dynamics of a qubit while simultaneously monitoring its relaxation and dephasing
Decoherence originates from the leakage of quantum information into external degrees of
freedom. For a qubit, the two main decoherence channels are relaxation and dephasing …
freedom. For a qubit, the two main decoherence channels are relaxation and dephasing …
Noisy quantum metrology enhanced by continuous nondemolition measurement
We show that continuous quantum nondemolition (QND) measurement of an atomic
ensemble is able to improve the precision of frequency estimation even in the presence of …
ensemble is able to improve the precision of frequency estimation even in the presence of …
Quantum trajectories for propagating Fock states
BQ Baragiola, J Combes - Physical Review A, 2017 - APS
We derive quantum trajectories (also known as stochastic master equations) that describe
an arbitrary quantum system probed by a propagating wave packet of light prepared in a …
an arbitrary quantum system probed by a propagating wave packet of light prepared in a …
Optimal pure-state qubit tomography via sequential weak measurements
The spin-coherent-state positive-operator-valued-measure (POVM) is a fundamental
measurement in quantum science, with applications including tomography, metrology …
measurement in quantum science, with applications including tomography, metrology …
Novelty, efficacy, and significance of weak measurements for quantum tomography
The use of weak measurements for performing quantum tomography is enjoying increased
attention due to several recent proposals. The claimed merits of using weak measurements …
attention due to several recent proposals. The claimed merits of using weak measurements …
Drawing together control landscape and tomography principles
The ability to control quantum systems using shaped fields as well as to infer the states of
such controlled systems from measurement data are key tasks in the design and operation …
such controlled systems from measurement data are key tasks in the design and operation …
Quantum tomography with random diagonal unitary maps and statistical bounds on information generation using random matrix theory
We study quantum tomography from a continuous measurement record obtained by
measuring expectation values of a set of Hermitian operators obtained from unitary evolution …
measuring expectation values of a set of Hermitian operators obtained from unitary evolution …
Near-optimal quantum tomography: estimators and bounds
We give bounds on the average fidelity achievable by any quantum state estimator, which is
arguably the most prominently used figure of merit in quantum state tomography. Moreover …
arguably the most prominently used figure of merit in quantum state tomography. Moreover …