First-passage distribution
Core PMF/CDF/survival quantities used across the major report families.
Reports 26
From periodic baseline to reflecting and two-target variants, showing which structures preserve or break bimodality.
Read time 13 min Reports 5 Interactive panels 5
Grid2D reports are organized as one progression: baseline, geometric constraints, reflecting boundaries, and two-target interactions.
The chapter highlights which mechanisms remain stable and which are sensitive to boundary or geometry changes.
Every subsection links back to the same claim ledger so conclusions can be checked without rereading all PDFs.
Bridge from Chapter 1: with shared FPT diagnostics in place, we test which Grid2D geometric constraints preserve or break bimodality.
We begin by fixing the model premise: The model keeps reflecting-boundary lattice dynamics and evaluates endpoint wall geometry where corridor shortcuts are strongly constrained.
We then move to an auditable method chain: Case families are evaluated under common PMF/hazard diagnostics and compared by channel decomposition and timing windows.
Under the same diagnostic criterion, the chapter-level result and finding are: For the scanned endpoint cases, dominant behavior is single-peak plus long tail; the late-window hump is identified as an edge artifact instead of a robust bimodal signature.…
Bridge note: keep the same hazard/survival diagnostics from Grid2D, then switch geometry to ring so shortcut and lazy parameters can be isolated without boundary-shape confounders.
Core PMF/CDF/survival quantities used across the major report families.
Reports 26
Links between f(t), S(t), and hazard-style diagnostics.
Reports 14
Peak/valley interpretation using hazard dynamics.
Reports 12
How shortcut strength changes bimodality and phase behavior.
Reports 13
Discrete Cauchy / FFT inversion from generating functions.
Reports 11
Eigenvalue / resolvent based derivations.
Reports 3
Derivation Link grid2d_bimodality
Adds a relation that links neighboring steps in the derivation chain.
Derivation Link grid2d_bimodality
Adds a relation that links neighboring steps in the derivation chain.
Derivation Link grid2d_blackboard_bimodality
Adds a relation that links neighboring steps in the derivation chain.
Derivation Link grid2d_blackboard_bimodality
Adds a relation that links neighboring steps in the derivation chain.
Distribution Setup grid2d_rect_bimodality
Defines first-passage probability objects used by later diagnostics.
Derivation Link grid2d_reflecting_bimodality
Adds a relation that links neighboring steps in the derivation chain.
Derivation Link grid2d_reflecting_bimodality
Adds a relation that links neighboring steps in the derivation chain.
Distribution Setup grid2d_two_target_double_peak
Defines first-passage probability objects used by later diagnostics.
Compare first/second peak prominence first, then adjust smoothing to test valley stability.
l mass [probability]
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Provenance: research/reports/grid2d_bimodality/artifacts/data/scan_candidate_B_corridor.json
Compare first/second peak prominence first, then adjust smoothing to test valley stability.
absorption delta_core, delta_open [probability]
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Provenance: research/reports/grid2d_blackboard_bimodality/artifacts/data/Z_scan.json
Toggle series and tune smoothing to see how parameter shifts reweight fast versus delayed pathways.
bx_values by_values
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Provenance: research/reports/grid2d_rect_bimodality/artifacts/data/ot_scan_bias2d.json
Compare first/second peak prominence first, then adjust smoothing to test valley stability.
gx q [probability]
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Provenance: research/reports/grid2d_reflecting_bimodality/code/config/cases_reflecting_summary.json
Compare first/second peak prominence first, then adjust smoothing to test valley stability.
mfpt_truncation_scan_t_max mfpt_truncation_scan_mass_any [probability]
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Provenance: research/reports/grid2d_two_target_double_peak/artifacts/data/method_comparison_c1.json
This chapter is presented as one coherent story. The underlying report artifacts are preserved as auditable evidence nodes.
finding grid2d_bimodality-c5 grid2d_bimodality
Candidate corridor/bias settings show that delayed channels can be amplified without changing the target definition.
source_document research/reports/grid2d_bimodality/manuscript/grid2d_bimodality_cn.texCandidate corridor/bias settings show that delayed channels can be amplified without changing the target definition.
section_summary research/reports/grid2d_bimodality/manuscript/grid2d_bimodality_cn.texA ( + ):FPT ; / " " " " ;AW exact recursion ,MC ( 、 )。 B ( + ): (g x,g y,)=(-0.25,0.40,0.70) , x , fast ; ( )。
section_summary research/reports/grid2d_bimodality/manuscript/grid2d_bimodality_cn.tex: 、 ; 、 ( p pass )、 sticky ; local bias; (g x,g y) 。 , 、 P(n,t) 、FPT , ; B valley。
math_block research/reports/grid2d_bimodality/manuscript/grid2d_bimodality_cn.texFinding formula context in Grid2D Bimodality Baseline: Candidate corridor/bias settings show that delayed channels can be amplified
dataset /data/v1/reports/grid2d_bimodality/series/scan_candidate_b_corridor-probability.jsonscan_candidate_B_corridor [probability]: l -> mass [probability]
result grid2d_blackboard_bimodality-c3 grid2d_blackboard_bimodality
For the scanned endpoint cases, dominant behavior is single-peak plus long tail; the late-window hump is identified as an edge artifact instead of a robust bimodal signature.
source_document research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.texFor the scanned endpoint cases, dominant behavior is single-peak plus long tail; the late-window hump is identified as an edge artifact instead of a robust bimodal signature.
section_summary research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.text_p2 late-window ( )。
section_summary research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.tex: S=(30,45) , T=(30,15) , " + " 。 : t_p1 102 ,valley ratio =1 , + ;
math_block research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.texResult formula context in Grid2D Blackboard Endpoint Case: For the scanned endpoint cases, dominant behavior is single-peak plus long tail
dataset /data/v1/reports/grid2d_blackboard_bimodality/series/z_scan-probability.jsonZ_scan [probability]: absorption -> delta_core, delta_open [probability]
result grid2d_rect_bimodality-c3 grid2d_rect_bimodality
Aspect ratio and endpoint arrangement shift the balance between direct and detour channels; robust double peaks persist only in specific rectangular geometry bands.
source_document research/reports/grid2d_rect_bimodality/artifacts/tables/ot_anchor_selection.texAspect ratio and endpoint arrangement shift the balance between direct and detour channels; robust double peaks persist only in specific rectangular geometry bands.
section_summary research/reports/grid2d_rect_bimodality/artifacts/tables/ot_anchor_selection.texResearch report grid2d_rect_bimodality.
math_block research/reports/grid2d_rect_bimodality/artifacts/tables/ot_anchor_selection.texResult formula context in Grid2D Rectangle Bimodality: Aspect ratio and endpoint arrangement shift the balance between direct and detour
dataset /data/v1/reports/grid2d_rect_bimodality/series/ot_scan_bias2d.jsonot_scan_bias2d: bx_values -> by_values
result grid2d_reflecting_bimodality-c3 grid2d_reflecting_bimodality
Several reflecting cases preserve clear early/late channel separation, while others collapse toward long-tail unimodality depending on geometric bottlenecks.
source_document research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.texSeveral reflecting cases preserve clear early/late channel separation, while others collapse toward long-tail unimodality depending on geometric bottlenecks.
section_summary research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.tex: R1( )、R7( + )、C3( )、R6(door )、NB4( “ ” )、NB5( + )、S1/S2( barrier/door ), 。 vs :R1/R7/C3 " + " / ;R6 door ;NB4/NB5 + ;S1/S2 sticky + , " " fast/slow
section_summary research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.tex双峰指标汇总: Several reflecting cases preserve clear early/late channel separation, while others collapse toward long-tail unimodality depending on geometric bottlenecks.
math_block research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.texResult formula context in Grid2D Reflecting-Boundary Bimodality: Several reflecting cases preserve clear early/late channel separation
dataset /data/v1/reports/grid2d_reflecting_bimodality/series/cases_reflecting_summary-probability.jsoncases_reflecting_summary [probability]: gx -> q [probability]
finding grid2d_two_target_double_peak-c5 grid2d_two_target_double_peak
Two-target competition creates a controlled mechanism for multi-timescale first-passage behavior.
source_document research/reports/grid2d_two_target_double_peak/artifacts/tables/case_mechanism.texTwo-target competition creates a controlled mechanism for multi-timescale first-passage behavior.
section_summary research/reports/grid2d_two_target_double_peak/artifacts/tables/case_mechanism.texResearch report grid2d_two_target_double_peak.
math_block research/reports/grid2d_two_target_double_peak/artifacts/tables/case_mechanism.texFinding formula context in Grid2D Two-Target Double-Peak: Two-target competition creates a controlled mechanism for multi-timescale
dataset /data/v1/reports/grid2d_two_target_double_peak/series/method_comparison_c1-probability.jsonmethod_comparison_c1 [probability]: mfpt_truncation_scan_t_max -> mfpt_truncation_scan_mass_any [probability]
model grid2d_blackboard_bimodality-c1 grid2d_blackboard_bimodality
The model keeps reflecting-boundary lattice dynamics and evaluates endpoint wall geometry where corridor shortcuts are strongly constrained.
source_document research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.texThe model keeps reflecting-boundary lattice dynamics and evaluates endpoint wall geometry where corridor shortcuts are strongly constrained.
section_summary research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.tex" y " , g y>0 ; g x>0 。 : p stay 。
section_summary research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.tex, transient, Q transient , r , p t+1 =Qp t, f(t)=r^->p p t 。 exact recursion ,AW MC 。
math_block research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.texModel formula context in Grid2D Blackboard Endpoint Case: The model keeps reflecting-boundary lattice dynamics and evaluates endpoint wall
method grid2d_reflecting_bimodality-c2 grid2d_reflecting_bimodality
Case families are evaluated under common PMF/hazard diagnostics and compared by channel decomposition and timing windows.
source_document research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.texCase families are evaluated under common PMF/hazard diagnostics and compared by channel decomposition and timing windows.
section_summary research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.tex(first-passage time) PMF f(t)= ,CDF F(t)= (t) , , f(t) “ t ” , f(t) 。 , F(t) “ ”, S(t) “ ”
section_summary research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.tex: propagator -> propagator -> FPT -> AW 。 。 A , A v,u = , 1, p t+1 =A p t 。 P n0 (n,t)= e n^->p A^t e n0, P (z)= t0 A^t z^, P n0 (n,z)= e n^->p (I-zA)e-1 e n0.
math_block research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.texMethod formula context in Grid2D Reflecting-Boundary Bimodality: Case families are evaluated under common PMF/hazard diagnostics and
dataset /data/v1/reports/grid2d_reflecting_bimodality/series/cases_reflecting_summary-probability.jsoncases_reflecting_summary [probability]: gx -> q [probability]
method grid2d_blackboard_bimodality-c2 grid2d_blackboard_bimodality
The pipeline runs blackboard case builders, screenshot-style scans, and channel/path decomposition diagnostics under the same FPT criteria.
source_document research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.texThe pipeline runs blackboard case builders, screenshot-style scans, and channel/path decomposition diagnostics under the same FPT criteria.
section_summary research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.tex数据与复现: The pipeline runs blackboard case builders, screenshot-style scans, and channel/path decomposition diagnostics under the same FPT criteria.
section_summary research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.tex参数表: The pipeline runs blackboard case builders, screenshot-style scans, and channel/path decomposition diagnostics under the same FPT criteria.
math_block research/reports/grid2d_blackboard_bimodality/manuscript/grid2d_blackboard_bimodality_cn.texMethod formula context in Grid2D Blackboard Endpoint Case: The pipeline runs blackboard case builders, screenshot-style scans, and
dataset /data/v1/reports/grid2d_blackboard_bimodality/series/z_scan-probability.jsonZ_scan [probability]: absorption -> delta_core, delta_open [probability]
method grid2d_rect_bimodality-c2 grid2d_rect_bimodality
The workflow scans geometry and bias parameters while keeping first-passage diagnostics fixed, then compares pathway composition across rectangular configurations.
source_document research/reports/grid2d_rect_bimodality/artifacts/tables/ot_anchor_selection.texThe workflow scans geometry and bias parameters while keeping first-passage diagnostics fixed, then compares pathway composition across rectangular configurations.
section_summary research/reports/grid2d_rect_bimodality/artifacts/tables/ot_anchor_selection.texResearch report grid2d_rect_bimodality.
math_block research/reports/grid2d_rect_bimodality/artifacts/tables/ot_anchor_selection.texMethod formula context in Grid2D Rectangle Bimodality: The workflow scans geometry and bias parameters while keeping first-passage
dataset /data/v1/reports/grid2d_rect_bimodality/series/ot_scan_bias2d.jsonot_scan_bias2d: bx_values -> by_values
model grid2d_reflecting_bimodality-c1 grid2d_reflecting_bimodality
The model keeps a reflecting 2D lattice with absorbing target and controlled local transport structures (detours, pores, tracks).
source_document research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.texThe model keeps a reflecting 2D lattice with absorbing target and controlled local transport structures (detours, pores, tracks).
section_summary research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.tex" y " , g y>0 。 : p stay 。 (1) g x>0 p left p right , g x>0 ( g x<0 )
section_summary research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.tex(first-passage time) PMF f(t)= ,CDF F(t)= (t) , , f(t) “ t ” , f(t) 。 , F(t) “ ”, S(t) “ ”
math_block research/reports/grid2d_reflecting_bimodality/manuscript/grid2d_reflecting_bimodality_cn.texModel formula context in Grid2D Reflecting-Boundary Bimodality: The model keeps a reflecting 2D lattice with absorbing target and
From periodic baseline to reflecting and two-target variants, showing which structures preserve or break bimodality.