From the 1 of 11 linked papers with an AI index.
11 papers
Harvest: Resource-Aware Quantum Compilation for Magic State Protocols
Jannik Pflieger, Aleksandra Åwierkowska, Aleksandra Świerkowska +2
Fault-tolerant quantum processors based on topological codes execute programs through lattice surgery, where operations must be mapped, routed, and supplied with magic states acros…
Zero-G: A Pre-Decoder-Aware Decoder for Quantum Error Correction
Peter Wegmann, Theofilos Augoustis, Aleksandra Åwierkowska +2
Fault-tolerant quantum computing requires classical decoders that keep pace with the underlying hardware, translating syndrome measurements into corrections fast enough to avoid an…
Oraqle: An Empirical Analysis of Qubit Readout and Discriminators in Quantum Error Correction
Emmanouil Giortamis, Aleksandra Åwierkowska, Aleksandra Świerkowska +4
Quantum error correction (QEC) is the most promising route toward fault-tolerant quantum computing and, thus, useful quantum computers. QEC operates as a continuous measure-decode-…
Multi-Stage Mamba-Based Architecture for Fast and Scalable Superconducting Qubit Readout
Luca Otting, Xiaorang Guo, Emmanouil Giortamis +3
The paper proposes a lightweight, multi-stage neural architecture based on the Mamba model to improve the speed and fidelity of superconducting qubit readout, especially in frequen…
MCMit: Hardware-Software Co-Design for Mid-Circuit Measurement Error Mitigation
Emmanouil Giortamis, Felix Gust, Aleksandra Świerkowska +8
Distributed Quantum Computing (DQC) and Quantum Error Correction (QEC) rely on dynamic circuits that include Mid-Circuit Measurements (MCMs) and classical feedback. These operation…
Chipmunq: A Fault-Tolerant Compiler for Chiplet Quantum Architectures
Peter Wegmann, Aleksandra Åwierkowska, Emmanouil Giortamis +1
As quantum computing advances toward fault-tolerance through quantum error correction, modular chiplet architectures have emerged to provide the massive qubit counts required while…