Cold atom based narrowband entangled photon sources are important for efficient atom - photon interaction, which is at the heart of long-distance quantum communication and quantum memory protocols. Complete characterization of the narrowband entangled photons requires acquiring the frequency-time two-photon wavefunction, involving both joint temporal intensity (JTI) and joint temporal phase (JTP) measurements. Here, we demonstrate stimulated emission tomography of the frequency-time two-photon wavefunction of narrowband entangled photons from cold atoms. We show more than six orders of magnitude (x106) improvement in the measurement time for obtaining JTI and JTP compared to the conventional direct photon counting method, thus paving the wa...
Quantum physics holds promise to revolutionise a number of technologies by enabling performance beyo...
We generate narrowband hyperentangled nondegenerate paired photons using spontaneous four-wave mixin...
Thesis Supervisor: Franco N.C. Wong Title: Senior Research ScientistRecent advances in quantum info...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
We identify a relation between the number of photon pairs generated by parametric fluorescence, thro...
We have developed the technique of two-photon joint temporal density measurements for temporal state...
It is known that photon pairs generated from pulse-pumped spontaneous parametric processes can be de...
Energy-time entangled photon pairs exhibit at the same time narrowband and short time features. We s...
Single photons are a natural platform for quantum technologies as they support entanglement in many ...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
We present a method of tomography that measures the joint spectral phase (JSP) of spontaneously emit...
The ability to manipulate and measure the time-frequency structure of quantum light is useful for in...
We generate narrowband hyperentangled nondegenerate paired photons using spontaneous four-wave mixin...
Using stimulated emission tomography, we characterize an entangled photon-pair source in the energy ...
Quantum physics holds promise to revolutionise a number of technologies by enabling performance beyo...
We generate narrowband hyperentangled nondegenerate paired photons using spontaneous four-wave mixin...
Thesis Supervisor: Franco N.C. Wong Title: Senior Research ScientistRecent advances in quantum info...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
We identify a relation between the number of photon pairs generated by parametric fluorescence, thro...
We have developed the technique of two-photon joint temporal density measurements for temporal state...
It is known that photon pairs generated from pulse-pumped spontaneous parametric processes can be de...
Energy-time entangled photon pairs exhibit at the same time narrowband and short time features. We s...
Single photons are a natural platform for quantum technologies as they support entanglement in many ...
To fully utilize the energy-time degree of freedom of photons for optical quantum-information proces...
We present a method of tomography that measures the joint spectral phase (JSP) of spontaneously emit...
The ability to manipulate and measure the time-frequency structure of quantum light is useful for in...
We generate narrowband hyperentangled nondegenerate paired photons using spontaneous four-wave mixin...
Using stimulated emission tomography, we characterize an entangled photon-pair source in the energy ...
Quantum physics holds promise to revolutionise a number of technologies by enabling performance beyo...
We generate narrowband hyperentangled nondegenerate paired photons using spontaneous four-wave mixin...
Thesis Supervisor: Franco N.C. Wong Title: Senior Research ScientistRecent advances in quantum info...