1 citations · 2 across the 4 of their papers we have counts for
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Flag Proxy Networks: Tackling the Architectural, Scheduling, and Decoding Obstacles of Quantum LDPC codes
Suhas Vittal, Ali Javadi-Abhari, Andrew W. Cross +2
Quantum error correction is necessary for achieving exponential speedups on important applications. The planar surface code has remained the most studied error-correcting code for…
Promatch: Extending the Reach of Real-Time Quantum Error Correction with Adaptive Predecoding
Narges Alavisamani, Suhas Vittal, Ramin Ayanzadeh +2
Fault-tolerant quantum computing relies on Quantum Error Correction, which encodes logical qubits into data and parity qubits. Error decoding is the process of translating the meas…
Élivágar: Efficient Quantum Circuit Search for Classification
Sashwat Anagolum, Narges Alavisamani, Poulami Das +3
Designing performant and noise-robust circuits for Quantum Machine Learning (QML) is challenging -- the design space scales exponentially with circuit size, and there are few well-…
Skipper: Improving the Reach and Fidelity of Quantum Annealers by Skipping Long Chains
Ramin Ayanzadeh, Moinuddin Qureshi
Quantum Annealers (QAs) operate as single-instruction machines, lacking a SWAP operation to overcome limited qubit connectivity. Consequently, multiple physical qubits are chained…