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20192026
most citedQuantum-Hall to Insulator Transition in Ultra-low-carrier-density Topological Insulator Films and a Hidden Phase of the Zeroth Landau Level

22 citations · 31 across the 7 of their papers we have counts for

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11 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-ph20261 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

40Gbps Tri-type Quantum Random Number Generator

Jiapeng Zhao, Eneet Kaur, Michael Kilzer +4

Traditional quantum random number generators can produce only one type of random number, while the optimal distribution of random numbers for different applications is usually dist…

quant-ph20251 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-ph20254 cited

Quantum Data Center Infrastructures: A Scalable Architectural Design Perspective

Hassan Shapourian, Eneet Kaur, Troy Sewell +4

This paper presents the design of scalable quantum networks that utilize optical switches to interconnect multiple quantum processors, facilitating large-scale quantum computing. B…

quant-ph20241 cited

Optimizing Quantum Communication for Quantum Data Centers with Reconfigurable Networks

Hezi Zhang, Yiran Xu, Haotian Hu +6

Distributed Quantum Computing (DQC) enables scalability by interconnecting multiple QPUs. Among various DQC implementations, quantum data centers (QDCs), which utilize reconfigurab…