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engines/majumdar_lab/package/multilayer_autonomous_optimizer/multilayer_nanobeam_phase7/DERIVATION_PHASE7.md · assembled 2026-07-29 15:57 UTC.
Layered Si3N4 strip and feed-pole subtraction¶
Let G_b(beta) be the projected outgoing Green matrix of the complete planar
background from Phases 5–6. Adding the finite-width Si3N4 strip is a compact
Dyson problem,
The physical y=-1 block contains the Ey-dominant feed mode. If beta_f is
a simple zero of D, with normalized right/left null vectors r,l, then
At the real closed-background pole the operator is Hermitian, so l=r. The
derivative is taken with respect to physical beta, giving a residue denominator
with units of length. Reciprocity gives
at the negative feed pole. Both Laurent terms are removed before numerical
longitudinal integration and restored in real space as exact right/left-going
feedthrough propagation. A symmetric two-sided Laurent estimate cancels the
linear regular term and therefore converges quadratically to R_f.