We design a quantum repeater architecture, necessary for long distance quantum networks, using the recently proposed microwave cat state qubits, formed and manipulated via interaction between a superconducting nonlinear element and a microwave cavity. These qubits are especially attractive for repeaters because in addition to serving as excellent computational units with deterministic gate operations, they also have coherence times long enough to deal with the unavoidable propagation delays. Since microwave photons are too low in energy to be able to carry quantum information over long distances, as an intermediate step, we expand on a recently proposed microwave to optical transduction protocol using excited states of a rare-earth ion (Er^...
We present a quantum repeater scheme that is based on individual erbium and europium ions. Erbium io...
The coherent transduction between microwave and optical frequencies is critical to interconnect supe...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
The quantum internet, when finally deployed, will enable a plethora of new applications such as theo...
International audienceEntangling two remote quantum systems that never interact directly is an essen...
Large-scale quantum computing will likely employ distributed network architectures in which photons,...
Quantum repeaters provide an efficient solution to distribute Bell pairs over arbitrarily long dista...
The realization of a quantum network composed of quantum nodes which process quantum fields and quan...
Realization of a globe-spanning quantum network is a current worldwide goal, where near and long ter...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
A Bell test is a hardware agnostic experimental procedure which can reject classes of physical theor...
A future quantum network will consist of quantum processors that are connected by quantum channels, ...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
We present a quantum repeater scheme that is based on individual erbium and europium ions. Erbium io...
The coherent transduction between microwave and optical frequencies is critical to interconnect supe...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
The quantum internet, when finally deployed, will enable a plethora of new applications such as theo...
International audienceEntangling two remote quantum systems that never interact directly is an essen...
Large-scale quantum computing will likely employ distributed network architectures in which photons,...
Quantum repeaters provide an efficient solution to distribute Bell pairs over arbitrarily long dista...
The realization of a quantum network composed of quantum nodes which process quantum fields and quan...
Realization of a globe-spanning quantum network is a current worldwide goal, where near and long ter...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
A Bell test is a hardware agnostic experimental procedure which can reject classes of physical theor...
A future quantum network will consist of quantum processors that are connected by quantum channels, ...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
We present a quantum repeater scheme that is based on individual erbium and europium ions. Erbium io...
The coherent transduction between microwave and optical frequencies is critical to interconnect supe...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...