What if entanglement could be used to accomplish the same distributed computation using half the communication as that of a classical network? That’s the advantage demonstrated by quantum dense network coding. As more senders join the network, the advantage can even grow exponentially. Join Brian Doolittle, Director of Engineering and Head of Simulation at Aliro, for a new LIVE webinar exploring how shared entanglement can enable multiple senders to securely perform distributed computations with fundamentally different communication requirements. In this webinar, you will learn: The fundamentals of quantum dense network coding. How entanglement reduces the information each sender needs to transmit. Why the advantage amplifies as the network grows. How measurement-device independence can enable data privacy and new approaches to secure distributed computation. Entanglement is enabling capabilities that go beyond simply recreating what classical networks already do. This webinar offers researchers, network architects, and quantum technology leaders a look at what becomes possible when entanglement itself becomes a network resource. Register: Research behind the webinar: #QuantumNetworking #EntanglementNetworks ↧ ↧ Quantum Dense Network Coding: Entanglement-based Communication and ... Quantum networks make it possible to share and process information in ways that traditional networks cannot. A new approach called quantum dense network coding shows how a central receiving hub and several senders can work together using entanglement to securely perform a distributed computation using half as much communication as would be neede... Communication Advantages from Quantum Dense Network Coding A central problem in quantum information theory is understanding how quantum resources