This theoretical exploration develops how overlapping domains maintain shared records, suggesting implications for consensus and fault tolerance.
Finite observer domains can form stable records while disagreeing locally, suffering false triggers, or receiving correlated disturbances. This paper develops a thermodynamic account of how overlapping domains can preserve a shared record sector without a central corrector. The mechanism is not a digital error-correcting code: no bit string, encoding map, parity-check circuit, decoding algorithm, or external controller is assumed. Instead, physical overlap supplies consistency pressure, independent evidence supplies correction direction, and detailed-balance dynamics supplies the irreversible cost of reconciliation. Pairwise overlap mismatch is represented by the minimum relative-entropy cost of reconciling two restrictions with a common state, equal to twice the classical or quantum Jensen-Shannon divergence. Near agreement this cost is governed by the Bogoliubov-Kubo-Mori metric. A stability bound relates horizontal overlap strain to record-channel information loss when retention is close to a BKM-orthogonal projection. For memoryful records, the same geometry lifts to finite process histories through conditional expectation of the path score. Classical and quantum conditional-response models identify the stored correction burden as relative-entropy free energy, with its decay governed by independently computed entropy production. In reciprocal networks, overlap alone enforces consensus rather than truth; fault tolerance appears only when evidence channels are sufficiently diverse. An exact graph-theoretic bound shows that local false-island protection is controlled by weighted boundary expansion, while the global sector is controlled by total evidence. Finite temperature and record barriers produce a bounded operating window between under-protection and excessive rigidity. Version 1.1 incorporates downstream validation from a companion finite-regulator study. A connected overlap atlas can collectively reconstruct Jacobson’s equilibrium equation of state even though each individual observer is rank deficient. This does not turn graph protection into a derivation of gravity: record-sector protection and null-direction tensor reconstruction are distinct roles of overlap, and neither internal consistency nor overlap consensus authenticates source truth without independent provenance.
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itay priiz (2026) studied this question.
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