A frequency tunable source of squeezed light has been developed which is suitable for a variety of spectroscopic applications. In initial experiments continuous tunability over a range of 2 GHz has been achieved with a directly observed nonclassical noise reduction of 6 dB relative to the vacuum-state limit in a balanced homodyne detector. A process of light-induced absorption in the nonlinear crystal has been identified as the principal loss mechanism which prevents the observation of yet larger degrees of squeezing. Although our source is potentially broadly tunable over the range of wavelengths from 840 to 970 nm, the current research centers on the performance at 852 nm for spectroscopy of the D₂ line of atomic cesium. For frequency-mod...
International audienceVacuum fluctuations of the electromagnetic field set a fundamental limit to th...
Vacuum fluctuations of the electromagnetic field set a fundamental limit to the sensitivity of a var...
Generation of quantum light source is a promising technique to overcome the standard quantum limit i...
A frequency tunable source of squeezed light has been developed which is suitable for a variety of s...
A frequency-tunable source of squeezed light is employed for spectroscopic measurements of atomic ce...
Experiments to generate squeezed states of light are described for a collection of two-level atoms w...
In this article, we present a novel spectroscopy technique that improves the signal-to-shot-noise ra...
Squeezed vacuum states at audio-band frequencies are important quantum resources for practical appli...
We present an experimental realization of resonance fluorescence in squeezed vacuum. We strongly cou...
The behavior of a three level atom in a cascade configuration with the lower transition coherently d...
The recent development of frequency tunable nonclassical light sources have opened up possibilities ...
We report on the generation of more than 5 dB of vacuum squeezed light at the rubidium D1 line (795 ...
We present analytical and numerical results for resonance fluorescence produced by a two-level atom ...
The laws of quantum mechanics imply the existence of an intrinsic uncertainty, or noise, in the elec...
The resonance fluorescence of a two-level atom driven by a coherent laser field and damped by a fini...
International audienceVacuum fluctuations of the electromagnetic field set a fundamental limit to th...
Vacuum fluctuations of the electromagnetic field set a fundamental limit to the sensitivity of a var...
Generation of quantum light source is a promising technique to overcome the standard quantum limit i...
A frequency tunable source of squeezed light has been developed which is suitable for a variety of s...
A frequency-tunable source of squeezed light is employed for spectroscopic measurements of atomic ce...
Experiments to generate squeezed states of light are described for a collection of two-level atoms w...
In this article, we present a novel spectroscopy technique that improves the signal-to-shot-noise ra...
Squeezed vacuum states at audio-band frequencies are important quantum resources for practical appli...
We present an experimental realization of resonance fluorescence in squeezed vacuum. We strongly cou...
The behavior of a three level atom in a cascade configuration with the lower transition coherently d...
The recent development of frequency tunable nonclassical light sources have opened up possibilities ...
We report on the generation of more than 5 dB of vacuum squeezed light at the rubidium D1 line (795 ...
We present analytical and numerical results for resonance fluorescence produced by a two-level atom ...
The laws of quantum mechanics imply the existence of an intrinsic uncertainty, or noise, in the elec...
The resonance fluorescence of a two-level atom driven by a coherent laser field and damped by a fini...
International audienceVacuum fluctuations of the electromagnetic field set a fundamental limit to th...
Vacuum fluctuations of the electromagnetic field set a fundamental limit to the sensitivity of a var...
Generation of quantum light source is a promising technique to overcome the standard quantum limit i...