We report the experimental realization of squeezed quantum states of light, tailored for new applications in quantum communication and metrology. Squeezed states in a broad Fourier frequency band down to 1 Hz has been observed for the first time. Nonclassical properties of light in such a low frequency band is required for high efficiency quantum information storage in electromagnetically induced transparency (EIT) media. The states observed also cover the frequency band of ultra-high precision laser interferometers for gravitational wave detection and can be used to reach the regime of quantum non-demolition interferometry. And furthermore, they cover the frequencies of motions of heavily macroscopic objects and might therefore support the...
We report on the demonstration of broadband squeezed laser beams that show a frequency-dependent ori...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Quantum noise is one of the limiting factors in laser-interferometric gravitational-wave (GW) detect...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
doi:10.1088/1367-2630/9/10/371 Abstract. We report the experimental realization of squeezed quantum ...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
Here, we report on the generation of strongly squeezed vacuum states at 532 nm with 5.5 dB noise sup...
Non-classical squeezed states of light are becoming increasingly important to a range of metrology a...
Squeezing of light's quantum noise requires temporal rearranging of photons. This again corresponds ...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Quantum metrology is the application of quantum mechanics towards the enhancement of measurements. ...
In recent years there has developed a rapidly growing interest in the manifestly quantum or nonclass...
We report on the demonstration of broadband squeezed laser beams that show a frequency-dependent ori...
We report on the demonstration of broadband squeezed laser beams that show a frequency-dependent ori...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Quantum noise is one of the limiting factors in laser-interferometric gravitational-wave (GW) detect...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
doi:10.1088/1367-2630/9/10/371 Abstract. We report the experimental realization of squeezed quantum ...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
Here, we report on the generation of strongly squeezed vacuum states at 532 nm with 5.5 dB noise sup...
Non-classical squeezed states of light are becoming increasingly important to a range of metrology a...
Squeezing of light's quantum noise requires temporal rearranging of photons. This again corresponds ...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Quantum metrology is the application of quantum mechanics towards the enhancement of measurements. ...
In recent years there has developed a rapidly growing interest in the manifestly quantum or nonclass...
We report on the demonstration of broadband squeezed laser beams that show a frequency-dependent ori...
We report on the demonstration of broadband squeezed laser beams that show a frequency-dependent ori...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Quantum noise is one of the limiting factors in laser-interferometric gravitational-wave (GW) detect...