2.5D LDOS cavity optimizerhoodlab · 780 nm

2026-08-15 · 3D candidate; pole gate not accepted

Paired full-vector 3D transfer

qualified artifacts updated 2026-08-15 11:11 UTC

Initial and optimized 2.5D densities were fitted independently to the same 3D topology map and their vector modes were reacquired on a common Yee grid.

Vector overlap
0.997021
Peak gap response
+4.453%
Driven response
+5.029%
Apparent pole Q
+1.440%
Initial pole gate
FAIL
Optimized pole gate
FAIL

Decision. Mode identity and the direct centered-gap response improvement are credible. The apparent 1.44% pole-Q gain is not accepted because the two-mode cluster fails strict wide/local and holdout gates.

Paired full-vector 3D transfer
Geometry-only transfer from projected 2.5D densities to independently fitted 3D midplanes.
Paired full-vector 3D transfer
The direct response improves, but held-out rational Q remains too dispersed for acceptance.
Paired full-vector 3D transfer
Matched lower and upper vector-field profiles confirm branch identity.

Gate record

GateResult
holdout q range ≤ 0.15FAIL
linewidth q difference ≤ 0.10PASS
maximum holdout pole shift ≤ 0.15 halfwidthFAIL
maximum holdout response nrmse ≤ 1e-5PASS
simo loewner q difference ≤ 0.10PASS
wide local pole shift ≤ 0.15 halfwidthFAIL
wide local q difference ≤ 0.05PASS

Reproducibility artifacts

Reports, raw metrics, configurations, checkpoints, and validation data retained for this attempt.

transfer_metrics.jsonmetrics.jsonPAIRED_SPECTRAL_REPORT.mdmetrics.json
← All runsRejected interpretations