collaborators

9 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

Quantum-Resistant Quantum Teleportation

Xin Jin, Nitish Kumar Chandra, Mohadeseh Azari +4

We propose a quantum-resistant quantum teleportation (QRQT) framework protected by post-quantum cryptography (PQC) to secure the classical correction channel, which is vulnerable t…

quant-ph2025

Network Operations Scheduling for Distributed Quantum Computing

Nitish Kumar Chandra, Eneet Kaur, Kaushik P. Seshadreesan

Realizing distributed architectures for quantum computing is crucial to scaling up computational power. A key component of such architectures is a scheduler that coordinates operat…

quant-ph2025

Architectural Approaches to Fault-Tolerant Distributed Quantum Computing and Their Entanglement Overheads

Nitish Kumar Chandra, Eneet Kaur, Kaushik P. Seshadreesan

Fault tolerant quantum computation over distributed quantum computing (DQC) platforms requires careful evaluation of resource requirements and noise thresholds. As quantum hardware…