We present a method to produce pure single photons with an arbitrary designed temporal shape in a heralded way. As an indispensable resource, the method uses pairs of time-energy entangled photons. One photon of a pair undergoes temporal amplitude-phase modulation according to the desired shape. Subsequent frequency-resolved detection of the modulated photon heralds its entangled counterpart in a pure quantum state. The temporal shape of the heralded photon is indirectly affected by the modulation in the heralding arm. We derive conditions for which the shape of the heralded photon is given by the modulation function. The method can be implemented with various sources of time-energy entangled photons. In particular, using entangled photons ...
When a single emitter is excited by two phase-coherent pulses with a time delay, each of the pulses ...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
We experimentally demonstrate a source of nearly pure single photons in arbitrary temporal shapes he...
We experimentally demonstrate temporal shaping of a heralded single-photon wave packet, prepared by ...
We study the generation of single-photon pulses with the tailored temporal shape via nonlocal spectr...
Creating and controlling well-defined single-photon states is important for many quantum enhanced te...
We put forward a generic method that enables lossless generation of pure single photons with arbitra...
SPIE optics + optoelectronics. Prague, Czech Republic, 13-16 April 2015International audienceThe abi...
A novel method for preparation of a single photon in temporally-delocalized entangled modes is propo...
The majority of photonic quantum information technologies rely on single photons that have high puri...
Time-energy entanglement is a quintessential resource for emerging quantum technologies. In this the...
We prepare single photons with a temporal envelope with rising exponential shape, resembling the tim...
Entangled photons, an essential resource in quantum technology, are mostly generated in spontaneous ...
In the twentieth century, the founding fathers of quantum mechanics explored the implications of the...
The equations that govern the temporal evolution of two photons in the Schr{\"o}dinger picture are d...
When a single emitter is excited by two phase-coherent pulses with a time delay, each of the pulses ...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
We experimentally demonstrate a source of nearly pure single photons in arbitrary temporal shapes he...
We experimentally demonstrate temporal shaping of a heralded single-photon wave packet, prepared by ...
We study the generation of single-photon pulses with the tailored temporal shape via nonlocal spectr...
Creating and controlling well-defined single-photon states is important for many quantum enhanced te...
We put forward a generic method that enables lossless generation of pure single photons with arbitra...
SPIE optics + optoelectronics. Prague, Czech Republic, 13-16 April 2015International audienceThe abi...
A novel method for preparation of a single photon in temporally-delocalized entangled modes is propo...
The majority of photonic quantum information technologies rely on single photons that have high puri...
Time-energy entanglement is a quintessential resource for emerging quantum technologies. In this the...
We prepare single photons with a temporal envelope with rising exponential shape, resembling the tim...
Entangled photons, an essential resource in quantum technology, are mostly generated in spontaneous ...
In the twentieth century, the founding fathers of quantum mechanics explored the implications of the...
The equations that govern the temporal evolution of two photons in the Schr{\"o}dinger picture are d...
When a single emitter is excited by two phase-coherent pulses with a time delay, each of the pulses ...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
We experimentally demonstrate a source of nearly pure single photons in arbitrary temporal shapes he...