The measurement of minuscule forces and displacements with ever greater precision is inhibited by the Heisenberg uncertainty principle, which imposes a limit to the precision with which the position of an object can be measured continuously, known as the standard quantum limit. When light is used as the probe, the standard quantum limit arises from the balance between the uncertainties of the photon radiation pressure applied to the object and of the photon number in the photoelectric detection. The only way to surpass the standard quantum limit is by introducing correlations between the position/momentum uncertainty of the object and the photon number/phase uncertainty of the light that it reflects. Here we confirm experimentally the theor...
Around the globe several observatories are seeking the first direct detection of gravitational waves...
The Laser Interferometer Gravitational Wave Observatory (LIGO) has been directly detecting gravitat...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
The measurement of minuscule forces and displacements with ever greater precision is inhibited by th...
The measurement of minuscule forces and displacements with ever greater precision is inhibited by th...
Quantum fluctuations in the phase and amplitude quadratures of light set limitations on the sensitiv...
Quantum fluctuations in the phase and amplitude quadratures of light set limitations on the sensitiv...
Quantum fluctuations in the phase and amplitude quadratures of light set limitations on the sensitiv...
Gravitational wave interferometers achieve their profound sensitivity by combining a Michelson inter...
Gravitational wave interferometers achieve their profound sensitivity by combining a Michelson inter...
The Laser Interferometer Gravitational Wave Observatory (LIGO) has been directly detecting gravitati...
Around the globe several observatories are seeking the first direct detection of gravitational waves...
The Laser Interferometer Gravitational Wave Observatory (LIGO) has been directly detecting gravitat...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
The measurement of minuscule forces and displacements with ever greater precision is inhibited by th...
The measurement of minuscule forces and displacements with ever greater precision is inhibited by th...
Quantum fluctuations in the phase and amplitude quadratures of light set limitations on the sensitiv...
Quantum fluctuations in the phase and amplitude quadratures of light set limitations on the sensitiv...
Quantum fluctuations in the phase and amplitude quadratures of light set limitations on the sensitiv...
Gravitational wave interferometers achieve their profound sensitivity by combining a Michelson inter...
Gravitational wave interferometers achieve their profound sensitivity by combining a Michelson inter...
The Laser Interferometer Gravitational Wave Observatory (LIGO) has been directly detecting gravitati...
Around the globe several observatories are seeking the first direct detection of gravitational waves...
The Laser Interferometer Gravitational Wave Observatory (LIGO) has been directly detecting gravitat...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...