Quantum metrology is the state-of-the-art measurement technology. It uses quantum resources to enhance the sensitivity of phase estimation over that achievable by classical physics. While single parameter estimation theory has been widely investigated, much less is known about the simultaneous estimation of multiple phases, which finds key applications in imaging and sensing. In this manuscript we provide conditions of useful particle (qudit) entanglement for multiphase estimation and adapt them to multiarm Mach-Zehnder interferometry. We theoretically discuss benchmark multimode Fock states containing useful qudit entanglement and overcoming the sensitivity of separable qudit states in three and four arm Mach-Zehnder-like interferometers -...
For a fixed average energy, the simultaneous estimation of multiple phases can provide a better tota...
We study a Mach-Zehnder interferometer fed by a coherent state in one input port and vacuum in the o...
Quantum entanglement is a fascinating physical resource that is central to the field of quantum info...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Multiparameter estimation is a general problem that aims at measuring unknown physical quantities, o...
Careful tailoring the quantum state of probes offers the capability of investigating matter at unpre...
Relevant metrological scenarios involve the simultaneous estimation of multiple parameters. The fund...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
We propose a method to generate the multi-mode entangled catalysis squeezed vacuum states (MECSVS) b...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
We study the simultaneous estimation of multiple phases as a discretized model for the imaging of a ...
Phase estimation has a wide range of applications. Over the years, several strategies have been stud...
The fundamental precision limit of an interferometer is crucial since it bounds the best possible se...
Only with the simultaneous estimation of multiple parameters are the quantum aspects of metrology fu...
Quantum parameter estimation offers solid conceptual grounds for the design of sensors enjoying quan...
For a fixed average energy, the simultaneous estimation of multiple phases can provide a better tota...
We study a Mach-Zehnder interferometer fed by a coherent state in one input port and vacuum in the o...
Quantum entanglement is a fascinating physical resource that is central to the field of quantum info...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Multiparameter estimation is a general problem that aims at measuring unknown physical quantities, o...
Careful tailoring the quantum state of probes offers the capability of investigating matter at unpre...
Relevant metrological scenarios involve the simultaneous estimation of multiple parameters. The fund...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
We propose a method to generate the multi-mode entangled catalysis squeezed vacuum states (MECSVS) b...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
We study the simultaneous estimation of multiple phases as a discretized model for the imaging of a ...
Phase estimation has a wide range of applications. Over the years, several strategies have been stud...
The fundamental precision limit of an interferometer is crucial since it bounds the best possible se...
Only with the simultaneous estimation of multiple parameters are the quantum aspects of metrology fu...
Quantum parameter estimation offers solid conceptual grounds for the design of sensors enjoying quan...
For a fixed average energy, the simultaneous estimation of multiple phases can provide a better tota...
We study a Mach-Zehnder interferometer fed by a coherent state in one input port and vacuum in the o...
Quantum entanglement is a fascinating physical resource that is central to the field of quantum info...