collaborators

6 papers

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

FPGA-tailored algorithms for real-time decoding of quantum LDPC codes

Satvik Maurya, Thilo Maurer, Markus Bühler +2

Real-time decoding is crucial for fault-tolerant quantum computing but likely requires specialized hardware such as field-programmable gate arrays (FPGAs), whose parallelism can al…

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…

quant-ph2025

Enabling Fast and Accurate Neutral Atom Readout through Image Denoising

Chaithanya Naik Mude, Linipun Phuttitarn, Satvik Maurya +3

Neutral atom quantum computers hold promise for scaling up to hundreds of thousands or more qubits, but their progress is constrained by slow qubit readout. Parallel measurement of…

quant-ph2025

Synchronization for Fault-Tolerant Quantum Computers

Satvik Maurya, Swamit Tannu

Quantum Error Correction (QEC) codes store information reliably in logical qubits by encoding them in a larger number of less reliable qubits. The surface code, known for its high…

quant-ph2025

Efficient and Scalable Architectures for Multi-Level Superconducting Qubit Readout

Chaithanya Naik Mude, Satvik Maurya, Benjamin Lienhard +1

Realizing the full potential of quantum computing requires large-scale quantum computers capable of running quantum error correction (QEC) to mitigate hardware errors and maintain…