We report new experiments on polarization squeezing using ultrashort photonic pulses in a single pass of a birefringent fibre. We measure what is to our knowledge a record squeezing of -6.8±0.3 dB in optical fibers, which when corrected for linear losses is -10.4±0.8 dB. The measured polarization squeezing as a function of optical pulse energy, which spans a wide range from 3.5-178.8 pJ, shows a very good agreement with the quantum simulations, and for the first time we see the proof experimentally that Raman effects limit and reduce squeezing at high pulse energy
Squeezed light is one of the resources of photonic quantum technology. Among the various nonlinear i...
We present new results on photon number squeezing of spectrally filtered solitons in fibers. The imp...
Photon number squeezing of spectrally filtered optical solitons has been observed in the sub-picosec...
We report new experiments on polarization squeezing using ultrashort photonic pulses in a single pas...
We investigate polarization squeezing of ultrashort pulses in optical fibre, over a wide range of in...
We report on a source of polarization squeezing (5.1±0.3 dB) based on a single pass through an optic...
We investigate polarization squeezing of ultrashort pulses in optical fiber, over a wide range of in...
Comparing stochastic simulations and experimental measurements, we study the quantum dynamics of pol...
Broadband quantum noise suppression of light is required for many applications, including detection ...
We report on a novel and efficient source of polarization squeezing that uses a single pass through ...
We report new experiments that test quantum dynamical predictions of polarization squeezing for ultr...
The prediction of squeezed optical pulses in single-mode fibers utilizing the Kerr effect has recent...
Bright squeezed light can be generated in optical fibers utilizing the Kerr effect for ultrashort la...
Photonic Crystal Fibers can be tailored to increase the effective Kerr nonlinearity, while producing...
To the best of our knowledge, we demonstrate for the first time the generation of photon number sque...
Squeezed light is one of the resources of photonic quantum technology. Among the various nonlinear i...
We present new results on photon number squeezing of spectrally filtered solitons in fibers. The imp...
Photon number squeezing of spectrally filtered optical solitons has been observed in the sub-picosec...
We report new experiments on polarization squeezing using ultrashort photonic pulses in a single pas...
We investigate polarization squeezing of ultrashort pulses in optical fibre, over a wide range of in...
We report on a source of polarization squeezing (5.1±0.3 dB) based on a single pass through an optic...
We investigate polarization squeezing of ultrashort pulses in optical fiber, over a wide range of in...
Comparing stochastic simulations and experimental measurements, we study the quantum dynamics of pol...
Broadband quantum noise suppression of light is required for many applications, including detection ...
We report on a novel and efficient source of polarization squeezing that uses a single pass through ...
We report new experiments that test quantum dynamical predictions of polarization squeezing for ultr...
The prediction of squeezed optical pulses in single-mode fibers utilizing the Kerr effect has recent...
Bright squeezed light can be generated in optical fibers utilizing the Kerr effect for ultrashort la...
Photonic Crystal Fibers can be tailored to increase the effective Kerr nonlinearity, while producing...
To the best of our knowledge, we demonstrate for the first time the generation of photon number sque...
Squeezed light is one of the resources of photonic quantum technology. Among the various nonlinear i...
We present new results on photon number squeezing of spectrally filtered solitons in fibers. The imp...
Photon number squeezing of spectrally filtered optical solitons has been observed in the sub-picosec...