activity
20242026
collaborators

14 papers

quant-ph2026

Iceberg Beyond the Tip: Co-Compilation of a Quantum Error Detection Code and a Quantum Algorithm

Yuwei Jin, Zichang He, Tianyi Hao +5

The rapid progress in quantum hardware is expected to make them viable tools for the study of quantum algorithms in the near term. The timeline to useful algorithmic experimentatio…

quant-ph2026

Managing Classical Processing Requirements for Quantum Error Correction

Satvik Maurya, Abtin Molavi, Aws Albarghouthi +1

Large-scale quantum computers promise transformative speedups, but their viability hinges on fast and reliable quantum error correction (QEC). At the center of QEC are decoders-cla…

quant-ph2026

Exploiting many-body localization for scalable variational quantum simulation

Chenfeng Cao, Yeqing Zhou, Swamit Tannu +2

Variational quantum algorithms (VQAs) represent a promising pathway toward achieving practical quantum advantage on near-term hardware. Despite this promise, for generic, expressiv…

quant-ph2026

Reducing T Gates with Unitary Synthesis

Tianyi Hao, Amanda Xu, Swamit Tannu

Quantum error correction is essential for achieving practical quantum computing but has a significant computational overhead. Among fault-tolerant (FT) gate operations, non-Cliffor…

quant-ph2026

PropHunt: Automated Optimization of Quantum Syndrome Measurement Circuits

Joshua Viszlai, Satvik Maurya, Swamit Tannu +2

Fault-Tolerant Quantum Computing (FTQC) relies on Quantum Error Correction (QEC) codes to reach error rates necessary for large scale quantum applications. At a physical level, QEC…

cs.PL2026

Generating Compilers for Qubit Mapping and Routing

Abtin Molavi, Amanda Xu, Ethan Cecchetti +2

To evaluate a quantum circuit on a quantum processor, one must find a mapping from circuit qubits to processor qubits and plan the instruction execution while satisfying the proces…