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Launching SHYPS: QLDPC is the New Error Correction
Whitepaper
Quantum computing is set to drive a technological revolution, solving complex challenges beyond the reach of classical methods. From materials design and drug discovery to alternative energy, its impact will reshape industries and unlock unprecedented possibilities. Qubits — as quantum bits, the foundational building blocks for quantum computers are known — are notoriously susceptible to “noise” from their environment. Left alone, this noise makes the entire system unreliable. To reach the point where quantum systems can run commercial-scale applications, quantum “error correction” is required to address the high sensitivity to that noise.
Publication
Giant Isotope Effect on the Excited-State Lifetime and Emission Efficiency of the Silicon T Center
Journal: Physical Review Letters
Open-access versionMar 5, 2026
Publication
Silicon 𝑇-center hyperfine structure and memory protection schemes
Journal: Physical Review B
Open-access versionJan 13, 2026
Publication
Electrically triggered spin–photon devices in silicon
Journal: Nature Photonics
Open-access versionSep 11, 2025
Publication
Giant Isotope Effect on the Excited-State Lifetime and Emission Efficiency of the Silicon T Center
Journal: Physical Review Letters
Open-access versionMar 5, 2026
Publication
Silicon 𝑇-center hyperfine structure and memory protection schemes
Journal: Physical Review B
Open-access versionJan 13, 2026
Publication
Electrically triggered spin–photon devices in silicon
Journal: Nature Photonics
Open-access versionSep 11, 2025
Publication
Laser-induced spectral diffusion and excited-state mixing of silicon T centres
Journal: PRX Quantum
Apr 24, 2025
Publication
Scalable Fault-Tolerant Quantum Technologies with Silicon Colour Centres
Journal: PRX Quantum
Mar 13, 2024
Publication
Generating T centres in photonic silicon-on-insulator material by ion implantation
Journal: New Journal of Physics
May 16, 2023