Interferometers are widely used as sensors in precision measurement. Compared with a conventional Mach–Zehnder interferometer, the sensitivity of a correlation-enhanced nonlinear interferometer can break the standard quantum limit. Phase sensitivity plays a significant role in the enhanced performance. In this paper, we review improvement in phase estimation technologies in correlation-enhanced nonlinear interferometers, including SU(1,1) interferometer and SU(1,1)-SU(2) hybrid interferometer, and so on, and the applications in quantum metrology and quantum sensing networks
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
As the simplest phase estimation protocol, the inversion estimator has been widely adopted in the qu...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Absolute sensitivity is measured for the phase measurement in an SU(1,1) type interferometer, and th...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
Summary. — Advancements in physics are often motivated/accompanied by ad-vancements in our precision...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Quantum information theory, applied to optical interferometry, yields a 1/n scaling of phase uncerta...
Phase estimation has a wide range of applications. Over the years, several strategies have been stud...
Introducing squeezed states of light into interferometers can increase the phase sensitivity of the ...
We theoretically derive the lower and upper bounds of quantum Fisher information (QFI) of an SU(1,1)...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
Quantum metrology promises greater sensitivity for optical phase measurements than could ever be ach...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
As the simplest phase estimation protocol, the inversion estimator has been widely adopted in the qu...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Absolute sensitivity is measured for the phase measurement in an SU(1,1) type interferometer, and th...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
Summary. — Advancements in physics are often motivated/accompanied by ad-vancements in our precision...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Quantum information theory, applied to optical interferometry, yields a 1/n scaling of phase uncerta...
Phase estimation has a wide range of applications. Over the years, several strategies have been stud...
Introducing squeezed states of light into interferometers can increase the phase sensitivity of the ...
We theoretically derive the lower and upper bounds of quantum Fisher information (QFI) of an SU(1,1)...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
Quantum metrology promises greater sensitivity for optical phase measurements than could ever be ach...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
As the simplest phase estimation protocol, the inversion estimator has been widely adopted in the qu...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...