peer reviewedIn quantum metrology, nonlinear many-body interactions can enhance the precision of Hamiltonian parameter estimation to surpass the Heisenberg scaling. Here, we consider the the estimation of the interaction strength in linear systems with long-range interactions and using the Kitaev chains as a case study, we establish a transition from the Heisenberg to super-Heisenberg scaling in the quantum Fisher information by varying the interaction range. We further show that quantum control can improve the prefactor of the quantum Fisher information. Our results explore the advantage of optimal quantum control and long-range interactions in many-body quantum metrology
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
In many-body quantum systems, the quantum Fisher information an observer can obtain is susceptible t...
In quantum metrology, nonlinear many-body interactions can enhance the precision of Hamiltonian para...
Màster Oficial de Ciència i Tecnologia Quàntiques / Quantum Science and Technology, Facultat de Físi...
The Heisenberg scaling is typically associated with nonclassicality and entanglement. In this work, ...
Quantum metrology shows that by exploiting nonclassical resources it is possible to overcome the fun...
We develop generalized bounds for quantum single-parameter estimation problems for which the couplin...
Quantum metrology is recognized for its capability to offer high-precision estimation by utilizing q...
Phase transitions represent a compelling tool for classical and quantum sensing applications. It has...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
41 pags., 10 figs., 7 apps.Phase transitions represent a compelling tool for classical and quantum s...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
peer reviewedWe develop a variational principle to determine the quantum controls and initial state ...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
In many-body quantum systems, the quantum Fisher information an observer can obtain is susceptible t...
In quantum metrology, nonlinear many-body interactions can enhance the precision of Hamiltonian para...
Màster Oficial de Ciència i Tecnologia Quàntiques / Quantum Science and Technology, Facultat de Físi...
The Heisenberg scaling is typically associated with nonclassicality and entanglement. In this work, ...
Quantum metrology shows that by exploiting nonclassical resources it is possible to overcome the fun...
We develop generalized bounds for quantum single-parameter estimation problems for which the couplin...
Quantum metrology is recognized for its capability to offer high-precision estimation by utilizing q...
Phase transitions represent a compelling tool for classical and quantum sensing applications. It has...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
41 pags., 10 figs., 7 apps.Phase transitions represent a compelling tool for classical and quantum s...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
peer reviewedWe develop a variational principle to determine the quantum controls and initial state ...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
In many-body quantum systems, the quantum Fisher information an observer can obtain is susceptible t...