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20222026
most citedOn the Analysis of Quantum Repeater Chains with Sequential Swaps

2 citations · 7 across the 14 of their papers we have counts for

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10 papers · 1 filter

quant-ph2026

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…

quant-ph2026★ 1 cited

Benchmarking Quantum Data Center Architectures: A Performance and Scalability Perspective

Shahrooz Pouryousef, Eneet Kaur, Hassan Shapourian +3

Scalable distributed quantum computing (DQC) has motivated the design of multiple quantum data-center (QDC) architectures that overcome the limitations of single quantum processors…

quant-ph2025

Network-Aware Scheduling for Remote Gate Execution in Quantum Data Centers

Shahrooz Pouryousef, Reza Nejabati, Don Towsley +2

Modular quantum computing provides a scalable approach to overcome the limitations of monolithic quantum architectures by interconnecting multiple Quantum Processing Units (QPUs) t…

quant-ph2025★ 1 cited

Optimized Quantum Circuit Partitioning Across Multiple Quantum Processors

Eneet Kaur, Hassan Shapourian, Jiapeng Zhao +3

This paper addresses the challenge of scaling quantum computing by employing distributed quantum algorithms across multiple processors. We propose a novel circuit partitioning meth…

quant-ph2024★ 2 cited

Leveraging Internet Principles to Build a Quantum Network

Leonardo Bacciottini, Matheus Guedes De Andrade, Shahrooz Pouryousef +6

Designing an operational architecture for the Quantum Internet is challenging in light of both fundamental limits imposed by physics laws and technological constraints. Here, we pr…

quant-ph2024

Analysis of Asynchronous Protocols for Entanglement Distribution in Quantum Networks

Shahrooz Pouryousef, Hassan Shapourian, Don Towsley

The distribution of entanglement in quantum networks is typically approached under idealized assumptions such as perfect synchronization and centralized control, while classical co…