We develop a protocol for entanglement generation in the quantum internet that allows a repeater node to use $n$-qubit Greenberger-Horne-Zeilinger (GHZ) projective measurements that can fuse $n$ successfully-entangled {\em links}, i.e., two-qubit entangled Bell pairs shared across $n$ network edges, incident at that node. Implementing $n$-fusion, for $n \ge 3$, is in principle not much harder than $2$-fusions (Bell-basis measurements) in solid-state qubit memories. If we allow even $3$-fusions at the nodes, we find---by developing a connection to a modified version of the site-bond percolation problem---that despite lossy (hence probabilistic) link-level entanglement generation, and probabilistic success of the fusion measurements at nodes,...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Quantum networks are composed of nodes which can send and receive quantum states by exchanging photo...
We develop a protocol for entanglement generation in the quantum internet that allows a repeater nod...
Quantum networks will be able to service consumers with long distance entanglement by use of repeate...
The past decade has seen tremendous progress in experimentally realizing the building blocks of quan...
A quantum internet aims at harnessing networked quantum technologies, namely by distributing biparti...
We consider the problem of creating a long-distance entangled state between two stations of a networ...
Long-distance quantum communication via distant pairs of entangled quantum bits (qubits) is the firs...
Future quantum internet applications will derive their power from the ability to share quantum infor...
We present a detailed experimental demonstration of entanglement distribution between two remote qua...
Quantum network applications like distributed quantum computing and quantum secret sharing present a...
Future quantum technologies such as quantum communication, quantum sensing, and distributed quantum ...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
Distribution of high-quality entanglement over long distances is a key step for the development of a...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Quantum networks are composed of nodes which can send and receive quantum states by exchanging photo...
We develop a protocol for entanglement generation in the quantum internet that allows a repeater nod...
Quantum networks will be able to service consumers with long distance entanglement by use of repeate...
The past decade has seen tremendous progress in experimentally realizing the building blocks of quan...
A quantum internet aims at harnessing networked quantum technologies, namely by distributing biparti...
We consider the problem of creating a long-distance entangled state between two stations of a networ...
Long-distance quantum communication via distant pairs of entangled quantum bits (qubits) is the firs...
Future quantum internet applications will derive their power from the ability to share quantum infor...
We present a detailed experimental demonstration of entanglement distribution between two remote qua...
Quantum network applications like distributed quantum computing and quantum secret sharing present a...
Future quantum technologies such as quantum communication, quantum sensing, and distributed quantum ...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
Distribution of high-quality entanglement over long distances is a key step for the development of a...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Quantum networks are composed of nodes which can send and receive quantum states by exchanging photo...