We report the results of coincidence counting experiments at the output, of a Michelson interferometer using the zero-phonon-line emission of a single molecule at 1.4 K. Under continuous wave excitation, we observe the absence of coincidence counts as an indication of two-photon interference. This corresponds to the observation of Hong-Ou-Mandel correlations and proves the suitability of the zero-phonon-line emission of single molecules for applications in linear optics quantum computation
Recently discovered quantum emitters in two-dimensional (2D) materials have opened new perspectives ...
Recently discovered quantum emitters in two-dimensional (2D) materials have opened new perspectives ...
International audienceWe report on two-photon interference of highly indistinguishable single photon...
Abstract. We report the results of coincidence counting experiments at the output of a Michelson int...
A single photon source which generates transform limited single photons is highly desirable for appl...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
Over the past decade, the quest for photon-based quantum information processing schemes has fueled i...
Quantum mechanics implies that a single photon can be in the superposition of two distant spatial mo...
We demonstrate two-photon interference using two remote single molecules as bright solid-state sourc...
We demonstrate two solid-state sources of indistinguishable single photons. High resolution laser sp...
We report on the triggered generation of identical photons by solid-state single-photon sources in t...
We built an, interferometer where one of the two slits of a classical Young's setup is replaced by a...
Recently discovered quantum emitters in two-dimensional (2D) materials have opened new perspectives ...
Recently discovered quantum emitters in two-dimensional (2D) materials have opened new perspectives ...
International audienceWe report on two-photon interference of highly indistinguishable single photon...
Abstract. We report the results of coincidence counting experiments at the output of a Michelson int...
A single photon source which generates transform limited single photons is highly desirable for appl...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
By using the zero-phonon line emission of an individual organic molecule, we realized a source of in...
Over the past decade, the quest for photon-based quantum information processing schemes has fueled i...
Quantum mechanics implies that a single photon can be in the superposition of two distant spatial mo...
We demonstrate two-photon interference using two remote single molecules as bright solid-state sourc...
We demonstrate two solid-state sources of indistinguishable single photons. High resolution laser sp...
We report on the triggered generation of identical photons by solid-state single-photon sources in t...
We built an, interferometer where one of the two slits of a classical Young's setup is replaced by a...
Recently discovered quantum emitters in two-dimensional (2D) materials have opened new perspectives ...
Recently discovered quantum emitters in two-dimensional (2D) materials have opened new perspectives ...
International audienceWe report on two-photon interference of highly indistinguishable single photon...