<p>Exploiting a micro-cavity-based quantum frequency comb, we demonstrate the on-chip generation of high-dimensional entangled quantum states with a Hilbert-space dimensionality larger than 100, and introduce a coherent control approach relying on standard telecommunications components. ? OSA 2018.</p
Integrated frequency combs introduce a scalable framework for the generation and manipulation of com...
Considerable efforts have recently focused on advancing quantum information pro- cessing by increasi...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Exploiting a micro-cavity-based quantum frequency comb, we demonstrate the on-chip generation of hig...
Exploiting a frequency-domain approach, we demonstrate the generation of high-dimensional e...
Optical quantum states based on entangled photons are essential for solving questions in fundamental...
Integrated quantum frequency combs provide access to multi-photon and highdimensional entangled stat...
Entangled optical quantum states are essential towards solving questions in fundamental physics and ...
We demonstrate the generation of high-dimensional entangled photon pairs with a Hilbert-space dimens...
We present a method for the generation and coherent manipulation of pulsed quantum frequency combs. ...
A key challenge in today’s quantum science is the realization of large-scale complex non-classical s...
The investigation of integrated frequency comb sources characterized by equidistant spectral mo...
Complex optical quantum states based on entangled photons are essential for investigations of fundam...
We present a method for the generation and coherent manipulation of pulsed quantum frequency combs. ...
The development of quantum technologies for quantum information science demands the realization and ...
Integrated frequency combs introduce a scalable framework for the generation and manipulation of com...
Considerable efforts have recently focused on advancing quantum information pro- cessing by increasi...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Exploiting a micro-cavity-based quantum frequency comb, we demonstrate the on-chip generation of hig...
Exploiting a frequency-domain approach, we demonstrate the generation of high-dimensional e...
Optical quantum states based on entangled photons are essential for solving questions in fundamental...
Integrated quantum frequency combs provide access to multi-photon and highdimensional entangled stat...
Entangled optical quantum states are essential towards solving questions in fundamental physics and ...
We demonstrate the generation of high-dimensional entangled photon pairs with a Hilbert-space dimens...
We present a method for the generation and coherent manipulation of pulsed quantum frequency combs. ...
A key challenge in today’s quantum science is the realization of large-scale complex non-classical s...
The investigation of integrated frequency comb sources characterized by equidistant spectral mo...
Complex optical quantum states based on entangled photons are essential for investigations of fundam...
We present a method for the generation and coherent manipulation of pulsed quantum frequency combs. ...
The development of quantum technologies for quantum information science demands the realization and ...
Integrated frequency combs introduce a scalable framework for the generation and manipulation of com...
Considerable efforts have recently focused on advancing quantum information pro- cessing by increasi...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...