We study the performance of initial product states of n-body systems in generalized quantum metrology protocols that involve estimating an unknown coupling constant in a nonlinear k-body (kn) Hamiltonian. We obtain the theoretical lower bound on the uncertainty in the estimate of the parameter. For arbitrary initial states, the lower bound scales as 1/nk, and for initial product states, it scales as 1/nk−1/2. We show that the latter scaling can be achieved using simple, separable measurements. We analyze in detail the case of a quadratic Hamiltonian (k=2), implementable with Bose-Einstein condensates. We formulate a simple model, based on the evolution of angular-momentum coherent states, which explains the O(n−3/2) scaling for k=2; the mod...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
In the theory of quantum dynamical filtering, one of the biggest issues is that the underlying syste...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
A parameter whose coupling to a quantum probe of n constituents includes all two-body interactions b...
We discuss a quantum-metrology protocol designed to estimate a physical parameter in a Bose-Einstein...
Questions about quantum limits on measurement precision were once viewed from the perspective of how...
We develop generalized bounds for quantum single-parameter estimation problems for which the couplin...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
International audienceWe analyze an experiment with continuous heterodyne measurement of an energy l...
We examine the relationship between nonseparable transformations and nonlinear optical processes, su...
peer reviewedIn quantum metrology, nonlinear many-body interactions can enhance the precision of Ham...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
Quantum metrology shows that by exploiting nonclassical resources it is possible to overcome the fun...
A statistical distinguishability based on relative entropy characterises the fitness of quantum stat...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
In the theory of quantum dynamical filtering, one of the biggest issues is that the underlying syste...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
A parameter whose coupling to a quantum probe of n constituents includes all two-body interactions b...
We discuss a quantum-metrology protocol designed to estimate a physical parameter in a Bose-Einstein...
Questions about quantum limits on measurement precision were once viewed from the perspective of how...
We develop generalized bounds for quantum single-parameter estimation problems for which the couplin...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
International audienceWe analyze an experiment with continuous heterodyne measurement of an energy l...
We examine the relationship between nonseparable transformations and nonlinear optical processes, su...
peer reviewedIn quantum metrology, nonlinear many-body interactions can enhance the precision of Ham...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
Quantum metrology shows that by exploiting nonclassical resources it is possible to overcome the fun...
A statistical distinguishability based on relative entropy characterises the fitness of quantum stat...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
In the theory of quantum dynamical filtering, one of the biggest issues is that the underlying syste...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...