Phase-insensitive optical amplifiers uniformly amplify each quadrature of an input field and are of both fundamental and technological importance. We find the quantum limit on the precision of estimating the gain of a quantum-limited phase-insensitive amplifier using a multimode probe that may also be entangled with an ancilla system. In stark contrast to the sensing of loss parameters, the average photon number N and number of input modes M of the probe are found to be equivalent and interchangeable resources for optimal gain sensing. All pure-state probes whose reduced state on the input modes to the amplifier is diagonal in the multimode number basis are proven to be quantum optimal under the same gain-independent measurement. We compare...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
This dissertation is a summary of investigations on the optical properties of a quantum-noise-limite...
Phase-insensitive optical amplifiers uniformly amplify each quadrature of an input field and are of ...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
We establish the ultimate quantum limits to the amplification of an unknown coherent state, both in ...
We consider the problem of estimating an unknown but constant carrier phase modulation theta using a...
The capacity of a linear attenuating optical channel with the signal regenerated using quantum-limit...
We demonstrate a balanced-homodyne LADAR receiver employing a phase-sensitive amplifier (PSA) to rai...
Abstract. We present a first feasible scheme for detecting the phase of a single mode of radiation w...
Amplification of signals is an elemental function for many information processing systems and commun...
Amplifiers are crucial in every experiment carrying out a very sensitive measurement. However, they ...
Optical parametric amplifiers together with phase-shifters and beamsplitters have certainly been the...
In this paper we evaluate experimentally measured signal-to-noise ratio performance of different typ...
I show that an optical amplifier, when combined with photon subtraction, can be used for quantum sta...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
This dissertation is a summary of investigations on the optical properties of a quantum-noise-limite...
Phase-insensitive optical amplifiers uniformly amplify each quadrature of an input field and are of ...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
We establish the ultimate quantum limits to the amplification of an unknown coherent state, both in ...
We consider the problem of estimating an unknown but constant carrier phase modulation theta using a...
The capacity of a linear attenuating optical channel with the signal regenerated using quantum-limit...
We demonstrate a balanced-homodyne LADAR receiver employing a phase-sensitive amplifier (PSA) to rai...
Abstract. We present a first feasible scheme for detecting the phase of a single mode of radiation w...
Amplification of signals is an elemental function for many information processing systems and commun...
Amplifiers are crucial in every experiment carrying out a very sensitive measurement. However, they ...
Optical parametric amplifiers together with phase-shifters and beamsplitters have certainly been the...
In this paper we evaluate experimentally measured signal-to-noise ratio performance of different typ...
I show that an optical amplifier, when combined with photon subtraction, can be used for quantum sta...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
This dissertation is a summary of investigations on the optical properties of a quantum-noise-limite...