B³D-HPV Lanthanide Quartz Photonic Computing Chip v3.5501 Supplementary Brief This supplementary version finalizes the system-level design of the B³D-HPV lanthanide quartz photonic computing chip, achieving a closed-loop architecture of single-plane UV/IR spatial cross-modulation SLM combined with a 5-sided PD array. It optimizes the core design with 3D voxel addressing without side pumping and a polarization incoherent computing paradigm, eliminating precision environmental dependence via Poincaré sphere coordinate mapping and local anisotropy-induced operation. The architecture supports five combinable virtual waveguide writing methods, and integrates a software-defined layer with three-level self-healing control algorithms (Optical Homing, Self-Organizing Routing, Vector Lock-loop) to realize logical topological equivalence and real-time polarization correction. A complete Photonic High-Level Synthesis (HLS) flow is established, enabling high-level language-to-physical collapse compilation with dual operating modes of static curing and streaming trigger. This upgrade significantly simplifies the optical path structure, enhances system robustness and engineering scalability, and lays a solid foundation for the prototype integration and scenario verification of the B³D-HPV chip, with key optimizations focused on monolithic integration, dynamic reconfigurability and high-dimensional computing adaptation.
Xiangning Chen (Tue,) studied this question.
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