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quant-ph2026

A Heterogeneous Distributed Architecture for Quantum Simulation

John Stack, Sitong Liu, Abhinav Anand +6

Architectural specialization and distribution can help scale fault-tolerant quantum computers, but may also introduce substantial overheads from communication, routing, and resourc…

quant-ph2026

Remote Entanglement in Lattice Surgery: To Distill, or Not to Distill

Sitong Liu, John Stack, Ke Sun +5

Distributed quantum computing can potentially address the scalability challenge by networking processors through photon-mediated remote entanglement. Prior approaches assumed that…

quant-ph2025

Theoretical Analysis and Simulations of Memory-based and All-photonic Quantum Repeaters and Networks

Chuen Hei Chan, Charu Jain, Ezra Kissel +4

Developing and deploying advanced Quantum Repeater (QR) technologies will be necessary to scale quantum networks to longer distances. Depending on the error mitigation mechanisms a…

quant-ph2025

Mitigation of birefringence in cavity-based quantum networks using frequency-encoded photons

Chengxi Zhang, Justin Phillips, Inder Monga +3

Atom-cavity systems offer unique advantages for building large-scale distributed quantum computers by providing strong atom-photon coupling while allowing for high-fidelity local o…

quant-ph2024

Temporally multiplexed ion-photon quantum interface via fast ion-chain transport

Bingran You, Qiming Wu, David Miron +4

High-rate remote entanglement between photon and matter-based qubits is essential for distributed quantum information processing. A key technique to increase the modest entangling…