Photon-distillation schemes with reduced resource costs based on multiphoton Fourier interference
F. H. B. Somhorst, Brandon Sauer, S. N. van den Hoven, Jelmer J. Renema · Physical Review Applied · 2025
The foundation of fault-tolerant linear optical quantum computing is built upon the interference of identical photons to create high-fidelity entangled states. Unfortunately, fabrication limitations cause sources to emit photons that are only partially indistinguishable, leading to computational errors. To address this, the authors introduce a photon-distillation scheme based on multiphoton-interference linear optics. This protocol mitigates arbitrary indistinguishability errors in a single round. A scheme combining conventional quantum error correction and photon distillation has a higher error threshold than quantum error correction alone, and requires fewer optical components.