We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in the continuous variable regime. The fields were produced by type I optical parametric oscillation in a standing-wave cavity build around a periodically poled potassium titanyl phosphate crystal, operated above threshold. Balanced homodyne detection was used to detect the non-classical noise properties, while filter cavities provided the local oscillators by separating carrier fields from the entangled sidebands. We were able to obtain an inseparability of I=0.82, corresponding to about -0.86 dB of non-classical quadrature correlation
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
We describe a very stable type II optical parametric oscillator operated above threshold which provi...
This thesis studies, both theoretically and experimentally, different levels of quantum correlations...
We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in ...
We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in ...
Abstract. We report on the generation of entangled states of light between the wavelengths 810 and 1...
We present the first measurement of squeezed-state entanglement between the twin beams produced in a...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
A new device to generate polarization-entangled light in the continuous variable regime is introduce...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
Quantum correlations between bright pump, signal, and idler beams produced by an optical parametric ...
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
The cluster states and Greenberger-Horne-Zeilinger (GHZ) states are two different types of multipart...
Integrated quantum photonics provides a scalable platform for the generation, manipulation, and dete...
Photonic entanglement sources are nowadays of central interest in the scientific landscape for their...
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
We describe a very stable type II optical parametric oscillator operated above threshold which provi...
This thesis studies, both theoretically and experimentally, different levels of quantum correlations...
We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in ...
We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in ...
Abstract. We report on the generation of entangled states of light between the wavelengths 810 and 1...
We present the first measurement of squeezed-state entanglement between the twin beams produced in a...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
A new device to generate polarization-entangled light in the continuous variable regime is introduce...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
Quantum correlations between bright pump, signal, and idler beams produced by an optical parametric ...
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
The cluster states and Greenberger-Horne-Zeilinger (GHZ) states are two different types of multipart...
Integrated quantum photonics provides a scalable platform for the generation, manipulation, and dete...
Photonic entanglement sources are nowadays of central interest in the scientific landscape for their...
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
We describe a very stable type II optical parametric oscillator operated above threshold which provi...
This thesis studies, both theoretically and experimentally, different levels of quantum correlations...