Coherent optical fiber networks are extremely sensitive to thermal, mechanical, and acoustic noise, which requires elaborate schemes of phase stabilization with dedicated auxiliary lasers, multiplexers, and photodetectors. This is particularly demanding in quantum networks operating at the single-photon level. Here, we propose a simple method of phase stabilization based on single-photon counting and apply it to quantum fiber networks implementing single-photon interference on a lossless beamsplitter and coherent perfect absorption on a metamaterial absorber. As a proof of principle, we show dissipative single-photon switching with visibility close to 80%. This method can be employed in quantum networks of greater complexity without classic...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
One way to achieve a scalable quantum computing and communication platform is to construct a network...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Coherent optical fiber networks are extremely sensitive to thermal, mechanical, and acoustic noise, ...
Large distance implementation of quantum communication technologies requires coherent control of sin...
Large distance implementation of quantum communication technologies requires coherent control of sin...
We report on the first demonstration of a fully fiberized quantum network by using a fiber-integrate...
In this report we provide the first demonstration of a fully fiberized quantum network with a fiber-...
In this report we provide the first demonstration of a fully fiberized quantum network with a fiber-...
Attenuation and dispersion losses in optical Telecom fibers are important limitations on both classi...
We experimentally demonstrate that absorption of one of the photons from the entangled pair can be s...
Multiphoton quantum correlations are crucial for quantum information processing and quantum communic...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
Modern fiber-optic networks leverage massive parallelization of communications channels in the spect...
Well-controlled yet practical systems that give access to interference effects are critical for esta...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
One way to achieve a scalable quantum computing and communication platform is to construct a network...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Coherent optical fiber networks are extremely sensitive to thermal, mechanical, and acoustic noise, ...
Large distance implementation of quantum communication technologies requires coherent control of sin...
Large distance implementation of quantum communication technologies requires coherent control of sin...
We report on the first demonstration of a fully fiberized quantum network by using a fiber-integrate...
In this report we provide the first demonstration of a fully fiberized quantum network with a fiber-...
In this report we provide the first demonstration of a fully fiberized quantum network with a fiber-...
Attenuation and dispersion losses in optical Telecom fibers are important limitations on both classi...
We experimentally demonstrate that absorption of one of the photons from the entangled pair can be s...
Multiphoton quantum correlations are crucial for quantum information processing and quantum communic...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
Modern fiber-optic networks leverage massive parallelization of communications channels in the spect...
Well-controlled yet practical systems that give access to interference effects are critical for esta...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
One way to achieve a scalable quantum computing and communication platform is to construct a network...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...