STATUS: RIGIDITY_TEST_COMPLETE
VERDICT: DTC_SPECIFICITY_NOT_ESTABLISHED
LOCK VERIFIED: TC_CLOSURE_LOCK_v001
Metric SHA256: 06344c8641aa14e6663cc3cba65d86fcdb9e37857909e85da6bc0d689e5b2553

GEOMETRY
Mi MBL-DTC vs exact classical 2T cosine similarity: 0.999988952
Mi MBL-DTC vs exact classical 2T normalized RMS distance: 0.005819179

INITIAL-STATE UNIVERSALITY
Mi MBL U: 0.986036
Mi prethermal U: 0.844370
Classical exact sign-flip U: 1.000000

DIMENSIONLESS BASIN RETENTION AREA
Frey_MBL_DTC: 0.982069
classical_exact2T_plus_noise: 0.923071
classical_exact2T_plus_damping: 0.669981

DOMINANCE TESTS
Exact classical 2T >= Mi MBL site on C,F,S: True
Classical sign-flip family >= Mi MBL initial on C,F,S,U: True
Mi MBL site >= thermal on C,F,S: True
Mi MBL initial >= prethermal on C,F,S,U: True

CORE CONCLUSION
The current higher-order recurrence-rigidity axes separate MBL-DTC from thermal/prethermal controls,
but they do not separate it uniquely from ordinary classical two-cycle dynamics.
A DTC-specific UNNS criterion now requires genuinely collective/many-body structure.
