We introduce a filter using a noise-free quantum buffer with large optical bandwidth that can both filter temporal-spectral modes as well as interconvert them and change their frequency. We theoretically show that such quantum buffers optimally filter out temporal-spectral noise, producing identical single photons from many distinguishable noisy single-photon sources with the minimum required reduction in brightness. We then experimentally demonstrate a noise-free quantum buffer in a warm atomic system that is well matched to quantum dots. Based on these experiments, simulations show that our buffer can outperform all intensity (incoherent) filtering schemes for increasing indistinguishability.</p
International audienceIn this paper, quantum filtering for a two-level atom, which is illuminated by...
International audienceThe single-photon quantum filtering problems have been investigated recently w...
Photons are the best long-range carriers of quantum information, but the unavoidable absorption and ...
We introduce a filter using a noise-free quantum buffer with large optical bandwidth that can both f...
We propose a quantum buffer which optimally filters the temporal-spectral mode of single photon sour...
International audienceA strong limitation of linear optical quantum computing is the probabilistic o...
We propose and experimentally demonstrate nondestructive and noiseless removal (filtering) of vacuum...
Optical quantum memories are devices that store and recall quantum light and are vital to the realis...
Quantum optics experiments frequently involve interfering single photons and coherent states. In the...
We demonstrate a photon buffer for quantum communication systems via a quantum frequency conversion–...
Starting with a single InAs quantum dot in a fiber-coupled microdisk cavity, we demonstrate signific...
Broadband quantum memories, used as temporal multiplexers, are a key component in photonic quantum i...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
We implement a low-noise, broadband quantum memory for light via off-resonant two-photon absorption ...
We investigate several recently published benchmark criteria for storage or transmission of continuo...
International audienceIn this paper, quantum filtering for a two-level atom, which is illuminated by...
International audienceThe single-photon quantum filtering problems have been investigated recently w...
Photons are the best long-range carriers of quantum information, but the unavoidable absorption and ...
We introduce a filter using a noise-free quantum buffer with large optical bandwidth that can both f...
We propose a quantum buffer which optimally filters the temporal-spectral mode of single photon sour...
International audienceA strong limitation of linear optical quantum computing is the probabilistic o...
We propose and experimentally demonstrate nondestructive and noiseless removal (filtering) of vacuum...
Optical quantum memories are devices that store and recall quantum light and are vital to the realis...
Quantum optics experiments frequently involve interfering single photons and coherent states. In the...
We demonstrate a photon buffer for quantum communication systems via a quantum frequency conversion–...
Starting with a single InAs quantum dot in a fiber-coupled microdisk cavity, we demonstrate signific...
Broadband quantum memories, used as temporal multiplexers, are a key component in photonic quantum i...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
We implement a low-noise, broadband quantum memory for light via off-resonant two-photon absorption ...
We investigate several recently published benchmark criteria for storage or transmission of continuo...
International audienceIn this paper, quantum filtering for a two-level atom, which is illuminated by...
International audienceThe single-photon quantum filtering problems have been investigated recently w...
Photons are the best long-range carriers of quantum information, but the unavoidable absorption and ...