10 papers
Impact of Network Constraints on Fault-Tolerant Distributed Quantum Computing
Eneet Kaur, Shahrooz Pouryousef, Nitish Kumar Chandra +4
As we move towards scalable and modular quantum computing, quantum data centres become imperative. Existing analyses typically treat network constraints in isolation or through sim…
ATHENA: A Compiler For Optimized Scheduling In Distributed Quantum Computers
Won Joon Yun, Dhilan Nag, Sneha Ballabh +3
Distributed Quantum Computers (DQCs) enable large system sizes by connecting smaller chips via photonic interconnects. DQCs use teleportation to relocate qubits and execute CNOTs b…
A Universal Quantum Information Preserving Photonic Switch for Scalable Quantum Networks
Jiapeng Zhao, Stéphane Vinet, Amir Minoofar +6
Quantum networks are a keystone of the quantum internet. However, existing implementations remain largely confined to static point-to-point links due to the absence of a switching…
High-rate Scalable Entanglement Swapping Between Remote Entanglement Sources on Deployed New York City Fibers
Alexander N. Craddock, Tyler Cowan, Niccolò Bigagli +11
Entanglement swapping between photon pairs generated at physically separated nodes over telecommunication fiber infrastructure is an essential step towards the quantum internet, en…
Scalable low-latency entanglement distribution for distributed quantum computing
Jiapeng Zhao, Yang Xu, Xiyuan Lu +5
Practical distributed quantum computing and error correction require quantum networks with high-qubit-rate, high-fidelity, and low-reconfiguration-latency. Unfortunately, current a…
Adaptive Job Scheduling in Quantum Clouds Using Reinforcement Learning
Waylon Luo, Jiapeng Zhao, Tong Zhan +1
Present-day quantum systems face critical bottlenecks, including limited qubit counts, brief coherence intervals, and high susceptibility to errors-all of which obstruct the execut…