The parametric interaction of light beams in nonlinear materials is usually thought to be too weak to be observed when the fields involved are at the single-photon level. However, such single-photon level nonlinearity is not only fundamentally fascinating but holds great potential for emerging technologies and applications involving heralding entanglement at a distance. Here we use a high-efficiency waveguide to demonstrate the sum-frequency generation between a single photon and a single-photon level coherent state. The use of an integrated, solid state, room temperature device and telecom wavelengths makes this type of system directly applicable to future quantum communication technologies such as device-independent quantum key distributi...
We describe the simplest single-photon encoding schemes and introduce the concept of a quantum optic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.This electronic v...
Single photons are excellent quantum information carriers: they were used in the earliest demonstrat...
Harnessing nonlinearities strong enough to allow single photons to interact with one another is not ...
A single semiconductor quantum dot that is strongly coupled to a photonic crystal nanocavity yields ...
The realization of strong interactions between individual photons is a long-standing goal of both fu...
Optical quantum systems are ideal for testing quantum mechanical laws, but they also find many uses ...
International audienceSingle photons constitute a main platform in quantum science and technology: t...
Coherent quantum optics, where the phase of a photon is not scrambled as it interacts with an emitte...
We coherently probe a quantum dot that is strongly coupled to a photonic crystal nano-cavity by scat...
Strong non-linear interactions between photons enable logic operations for both classical and quantu...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
The realization of strong nonlinear interactions between individual light quanta (photons) is a long...
We propose the use of weakly nonlinear passive materials for prospective applications in integrated ...
Photon-photon interactions are an essential requirement of quantum photonic information processing. ...
We describe the simplest single-photon encoding schemes and introduce the concept of a quantum optic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.This electronic v...
Single photons are excellent quantum information carriers: they were used in the earliest demonstrat...
Harnessing nonlinearities strong enough to allow single photons to interact with one another is not ...
A single semiconductor quantum dot that is strongly coupled to a photonic crystal nanocavity yields ...
The realization of strong interactions between individual photons is a long-standing goal of both fu...
Optical quantum systems are ideal for testing quantum mechanical laws, but they also find many uses ...
International audienceSingle photons constitute a main platform in quantum science and technology: t...
Coherent quantum optics, where the phase of a photon is not scrambled as it interacts with an emitte...
We coherently probe a quantum dot that is strongly coupled to a photonic crystal nano-cavity by scat...
Strong non-linear interactions between photons enable logic operations for both classical and quantu...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
The realization of strong nonlinear interactions between individual light quanta (photons) is a long...
We propose the use of weakly nonlinear passive materials for prospective applications in integrated ...
Photon-photon interactions are an essential requirement of quantum photonic information processing. ...
We describe the simplest single-photon encoding schemes and introduce the concept of a quantum optic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.This electronic v...
Single photons are excellent quantum information carriers: they were used in the earliest demonstrat...