collaborators

16 papers

quant-ph2026

Towards the Characterization of Logical Errors in Distributed Lattice Surgery

Nitish Kumar Chandra, Reza Nejabati, Eneet Kaur

Distributed quantum computing offers a scalable alternative to monolithic quantum processors by networking smaller quantum modules through shared entangled pairs. A central challen…

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

Distributed Quantum Error Correction with Bivariate Bicycle Codes in a Modular Architecture

Nitish Kumar Chandra, Eneet Kaur, Reza Nejabati +1

Quantum low density parity check (qLDPC) codes, particularly bivariate bicycle (BB) codes, achieve competitive fault tolerance thresholds while offering substantially higher encodi…

quant-ph2026

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…

quant-ph2026

RADAR-Q: Resource-Aware Distributed Asynchronous Routing for Entanglement Distribution in Multi-Tenant Quantum Networks

Chenliang Tian, Zebo Yang, Raj Jain +6

Scalable quantum networks must support concurrent entanglement requests, yet existing routing protocols fail when users compete for shared repeater resources, wasting fragile quant…

quant-ph2026

Asynchronous Routing for Multipartite Entanglement in Quantum Networks

Chenliang Tian, Zebo Yang, Raj Jain +6

In quantum networks, one way to communicate is to distribute entanglements through swapping at intermediate nodes. Most existing work primarily aims to create efficient two-party e…