We present a table-top quantum estimation protocol to measure the gravitational acceleration g by using an optomechanical cavity. In particular, we exploit the nonlinear quantum light-matter interaction between an optical field and a massive mirror acting as mechanical oscillator. The gravitational field influences the system dynamics affecting the phase of the cavity field during the interaction. Reading out such a phase carried by the radiation leaking from the cavity, we provide an estimate of the gravitational acceleration through interference measurements. Contrary to previous studies, having adopted a fully quantum description, we are able to propose a quantum analysis proving the ultimate bound to the estimability of the gravitationa...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
The sensitivity of future gravitational wave interferometers is expected to be limited throughout th...
Precision gravimetry is key to a number of scientific and industrial applications, including climate...
The precise estimation of the gravitational acceleration is important for various disciplines. We co...
We derive the best possible bounds that can be placed on Yukawa- and chameleon-like modifications to...
We derive the best possible bounds that can be placed on Yukawa- and chameleon-like modifications to...
Optomechanical detectors have reached the standard quantum limit in position and force sensing where...
Optomechanical detectors have reached the standard quantum limit in position and force sensing where...
In quantum mechanics, the measurement is responsible for a back-action on the measured system, which...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
The role of entanglement in determining the non-classicality of a given interaction has gained signi...
We present a way of measuring with high precision the anharmonicity of a quantum oscillator coupled ...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
The sensitivity of future gravitational wave interferometers is expected to be limited throughout th...
Precision gravimetry is key to a number of scientific and industrial applications, including climate...
The precise estimation of the gravitational acceleration is important for various disciplines. We co...
We derive the best possible bounds that can be placed on Yukawa- and chameleon-like modifications to...
We derive the best possible bounds that can be placed on Yukawa- and chameleon-like modifications to...
Optomechanical detectors have reached the standard quantum limit in position and force sensing where...
Optomechanical detectors have reached the standard quantum limit in position and force sensing where...
In quantum mechanics, the measurement is responsible for a back-action on the measured system, which...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
The role of entanglement in determining the non-classicality of a given interaction has gained signi...
We present a way of measuring with high precision the anharmonicity of a quantum oscillator coupled ...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
The sensitivity of future gravitational wave interferometers is expected to be limited throughout th...