This paper presents the technical and physical specifications for the Diamond-Based Hyper-Quantum Coherent Numerical Control Microchip (), defining Tier 2 of the hardware taxonomy. The architecture utilizes negatively charged Nitrogen-Vacancy (NV^-) color centers embedded within an isotopically pure ^12C synthetic diamond lattice to achieve stable solid-state quantum coherence at room temperature (T 298 K). We analyze the ground-state spin-Hamiltonian, zero-field splitting dynamics (D 2. 87 GHz), and hyperfine nuclear register coupling (^14N / ^13C) used for long-term nubit storage. Finally, we detail the micro-photonic integration of 2D photonic crystal cavities designed to route state-dependent zero-phonon line (ZPL) photons at the speed of light.
Jaime Quilez Zamora (Sun,) studied this question.