We report 100% duty cycle generation of sub-MHz single photon pairs at the rubidium D1 line using cavity-enhanced spontaneous parametric downconversion. The temporal intensity cross correlation function exhibits a bandwidth of 666±16 kHz for the single photons, an order of magnitude below the natural linewidth of the target transition. A half-wave plate inside our cavity helps to achieve triple resonance between pump, signal, and idler photon, reducing the bandwidth and simplifying the locking scheme. Additionally, stabilisation of the cavity to the pump frequency enables the 100% duty cycle. The quantum nature of the source is confirmed by the idler-triggered second-order autocorrelation function at τ=0 to be gs,s(2)(0)= 0.016±0.002 for a ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.In this thesis we study the deve...
We report a highly efficient source of narrow-band photon pairs based on parametric down-conversion ...
Highly correlated photons or, accordingly, high-fidelity single-photon states are a prerequisite for...
We report 100% duty cycle generation of sub-MHz single photon pairs at the rubidium D line using cav...
We present an efficient and robust source of photons at the 87Rb D1-line (795 nm) with a narrow band...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
We design a photon pair source with emission at 606 nm and 3.98 MHz linewidth, which matches the spe...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
The generation of high-quality single-photon states with controllable narrow spectral bandwidths and...
Interfaced single-photon sources and quantum memories for photons together form a foundational compo...
We report a highly efficient source of narrow-band photon pairs based on parametric down-conversion ...
We demonstrate efficient generation of collinearly propagating, highly nondegenerate photon pairs in...
Using a continuous-wave type-II optical parametric oscillator below threshold, we have demonstrated ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.In this thesis we study the deve...
We report a highly efficient source of narrow-band photon pairs based on parametric down-conversion ...
Highly correlated photons or, accordingly, high-fidelity single-photon states are a prerequisite for...
We report 100% duty cycle generation of sub-MHz single photon pairs at the rubidium D line using cav...
We present an efficient and robust source of photons at the 87Rb D1-line (795 nm) with a narrow band...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
We design a photon pair source with emission at 606 nm and 3.98 MHz linewidth, which matches the spe...
We report on the realization of a tunable single-photon source compatible with quantum memories base...
The generation of high-quality single-photon states with controllable narrow spectral bandwidths and...
Interfaced single-photon sources and quantum memories for photons together form a foundational compo...
We report a highly efficient source of narrow-band photon pairs based on parametric down-conversion ...
We demonstrate efficient generation of collinearly propagating, highly nondegenerate photon pairs in...
Using a continuous-wave type-II optical parametric oscillator below threshold, we have demonstrated ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.In this thesis we study the deve...
We report a highly efficient source of narrow-band photon pairs based on parametric down-conversion ...
Highly correlated photons or, accordingly, high-fidelity single-photon states are a prerequisite for...