Optical quantum technologies such as quantum sensing, quantum cryptography and quantum computation all utilize properties of non-classical light, such as precise photon-number and entangled photon-pair states, to surpass technologies based on the classical light. A common route for obtaining heralded single photons is spontaneous four-wave mixing in optical fibers, allowing for a well-defined spatial mode, for high efficiency integration into optical fiber networks. These fibers are typically pumped using large, commercial, pulsed lasers requiring high-power (~10 W) pump lasers and are limited to ~MHz repetition rate. Here we propose a cost- efficient, compact and mobile alternative. Photon pairs at 660 nm and 960 nm will be created using f...
Light, which is composed of discrete quanta, or photons, is one of the most fundamental concepts in ...
Entanglement and correlation of quantum light can enhance LiDAR sensitivity in the presence of stron...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...
The field of optical quantum information processing uses and manipulates the state of light to imple...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
We report a bright and tunable source of spectrally pure heralded single photons in the telecom O-Ba...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
The preparation of single photons in a pure quantum state is a subject of great interest in physics,...
Quantum technologies aim to make direct use of the physics of the very small to revolutionise how w...
Quantum technologies aim to make direct use of the physics of the very small to revolutionise how w...
Quantum technologies aim to make direct use of the physics of the very small to revolutionise how w...
International audienceWe report on a guided wave heralded photon source based on the creation of non...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
Light, which is composed of discrete quanta, or photons, is one of the most fundamental concepts in ...
Entanglement and correlation of quantum light can enhance LiDAR sensitivity in the presence of stron...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...
The field of optical quantum information processing uses and manipulates the state of light to imple...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
We report a bright and tunable source of spectrally pure heralded single photons in the telecom O-Ba...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
The preparation of single photons in a pure quantum state is a subject of great interest in physics,...
Quantum technologies aim to make direct use of the physics of the very small to revolutionise how w...
Quantum technologies aim to make direct use of the physics of the very small to revolutionise how w...
Quantum technologies aim to make direct use of the physics of the very small to revolutionise how w...
International audienceWe report on a guided wave heralded photon source based on the creation of non...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
Light, which is composed of discrete quanta, or photons, is one of the most fundamental concepts in ...
Entanglement and correlation of quantum light can enhance LiDAR sensitivity in the presence of stron...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...