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20242026
most citedSupercheQ: Quantum Advantage for Distributed Databases

5 citations · 5 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph20265 cited

SupercheQ: Quantum Advantage for Distributed Databases

E. R. Anschuetz, P. Gokhale, B. Tonekaboni +18

We introduce Supercheq, a family of quantum protocols that achieves asymptotic advantage over classical protocols for checking the equivalence of files, a task also known as finger…

quant-ph2026

qSIEVE: Efficient qLDPC Memory via Systolic Movement in Atom Arrays

Joshua Viszlai, Willers Yang, Sophia Fuhui Lin +4

As quantum machines have scaled up in their number of qubits, significant research has turned towards increasing their fidelity with quantum error correction codes. Although promis…

quant-ph2025

QuEst: Graph Transformer for Quantum Circuit Reliability Estimation

Hanrui Wang, Pengyu Liu, Jinglei Cheng +10

Among different quantum algorithms, PQC for QML show promises on near-term devices. To facilitate the QML and PQC research, a recent python library called TorchQuantum has been rel…

cs.LG2025

QuantumNAT: Quantum Noise-Aware Training with Noise Injection, Quantization and Normalization

Hanrui Wang, Jiaqi Gu, Yongshan Ding +4

Parameterized Quantum Circuits (PQC) are promising towards quantum advantage on near-term quantum hardware. However, due to the large quantum noises (errors), the performance of PQ…

quant-ph2024

Modeling Short-Range Microwave Networks to Scale Superconducting Quantum Computation

Nicholas LaRacuente, Kaitlin N. Smith, Poolad Imany +2

A core challenge for superconducting quantum computers is to scale up the number of qubits in each processor without increasing noise or cross-talk. Distributed quantum computing a…