A custom-made membrane mirror is used was used for compensation of the thermal phase instabilities of a two-photon path entangled state. Stabilization of the coincidence rate to within 1.5 standard deviation of the Poissonian noise is demonstrated over 2000 seconds. © 2011 American Institute of Physics
We put forward a new method to control the spectra of photon pairs generated in parametric downconve...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
We present a protocol that combines quantum and classical resources to increase the sensitivity of a...
We demonstrate the potentialities of a deformable mirror for closed-loop control of a two-photon pat...
We demonstrate the potentialities of a deformable mirror for closed-loop control of a two-photon pat...
The ability of an environment to assist in one-photon phase control relies upon entanglement between...
In this paper, we consider a three-mode optomechanical system, where two movable mirrors are coupled...
We present an efficient method to control the spatial modes of entangled photons produced through SP...
We experimentally demonstrate that absorption of one of the photons from the entangled pair can be s...
Entangled two-photon absorption spectroscopy (TPA) has been widely recognized as a powerful tool for...
In this paper we describe theoretically quantum control of temporal correlations of entangled photon...
We present an efficient method for optimizing the spatial profile of entangled-photon wave function ...
We show that transverse engineering of quasi-phase-matched geometries can be used to tailor the spat...
We show that transverse engineering of quasi-phase-matched geometries can be used to tailor the spat...
We put forward a new method to control the spectra of photon pairs generated in parametric downconve...
We put forward a new method to control the spectra of photon pairs generated in parametric downconve...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
We present a protocol that combines quantum and classical resources to increase the sensitivity of a...
We demonstrate the potentialities of a deformable mirror for closed-loop control of a two-photon pat...
We demonstrate the potentialities of a deformable mirror for closed-loop control of a two-photon pat...
The ability of an environment to assist in one-photon phase control relies upon entanglement between...
In this paper, we consider a three-mode optomechanical system, where two movable mirrors are coupled...
We present an efficient method to control the spatial modes of entangled photons produced through SP...
We experimentally demonstrate that absorption of one of the photons from the entangled pair can be s...
Entangled two-photon absorption spectroscopy (TPA) has been widely recognized as a powerful tool for...
In this paper we describe theoretically quantum control of temporal correlations of entangled photon...
We present an efficient method for optimizing the spatial profile of entangled-photon wave function ...
We show that transverse engineering of quasi-phase-matched geometries can be used to tailor the spat...
We show that transverse engineering of quasi-phase-matched geometries can be used to tailor the spat...
We put forward a new method to control the spectra of photon pairs generated in parametric downconve...
We put forward a new method to control the spectra of photon pairs generated in parametric downconve...
We report an optoelectronic feedback loop that permits the active stabilization of an interferometri...
We present a protocol that combines quantum and classical resources to increase the sensitivity of a...