From 907b5e25af32dc938bb04f4cb06a99cd55a20f46 Mon Sep 17 00:00:00 2001 From: YurenHao0426 Date: Thu, 6 Aug 2026 16:17:50 -0500 Subject: results: identify state-dependent physical drift --- TWO_STATE_BIAS_PROGRAM.md | 7 +++++++ 1 file changed, 7 insertions(+) (limited to 'TWO_STATE_BIAS_PROGRAM.md') diff --git a/TWO_STATE_BIAS_PROGRAM.md b/TWO_STATE_BIAS_PROGRAM.md index b0df1b2..1020b11 100644 --- a/TWO_STATE_BIAS_PROGRAM.md +++ b/TWO_STATE_BIAS_PROGRAM.md @@ -290,6 +290,13 @@ Stop this paper direction if: `1.8374/1.7360/1.9468`; see `results/physical_bias/p0_summary.json`. This reproduces a nonzero rapid-switching error floor and an approximately constant low-period drift speed from real hardware. It is not an SDIL result. +- Physical state-dependence diagnostic: complete. On held-out later portions of + the four released `DriftTests` traces, a per-edge affine field reduces + tangential-velocity RMSE to `0.21/0.54` of a constant-bias model for the two + task pairs. The direction is unchanged when excluding the final + `30/50/80/100 mV` before the observed gate plateaus; see + `results/physical_bias/p0_state_dependence.json`. This establishes a measured + locally predictable component suitable for P1, not an SDIL learning result. - Dual Prop same-path confirmation: active/supporting, not a passed result. - EP/CpL adapters: not implemented under this bias model. - Current score for this new paper framing: 5/10 until P1 passes. -- cgit v1.2.3