English

Intercloud: Eventual Consistency for Decentralised Economies via Chilling-Effect Consensus

Distributed, Parallel, and Cluster Computing 2026-05-25 v1 Cryptography and Security Computer Science and Game Theory

Abstract

We present Intercloud, a decentralised economic network in which streams of private data are secured by Watcher swarms that observe only cryptographic hashes, never plaintext. Intercloud requires no global consensus beyond a single shared random seed per epoch. Two mechanisms provide security: (i) ripple deduplication via epoch-stamped identifiers, preventing any ripple from propagating through the same node twice per epoch, guaranteeing termination without global coordination; and (ii) chilling-effect consensus, in which a swarm reaches finality by attesting to the absence of conflicting evidence rather than voting between alternatives. Any conflicting attestation automatically yields a self-certifying Proof of Corruption. We prove four main results. First, execution ripples terminate in bounded time via the ripple-ID mechanism. Second, a swarm of about 35 Watchers -- assigned by a verifiable random function, independent of total network size -- suffices for double-spending prevention, matching Hoepman's lower bound. Third, two correct clients can hold conflicting finality attestations only if the adversary compromises a supermajority of the assigned swarm or eclipses both clients from all honest nodes; we prove necessity and sufficiency. Fourth, Buridan's Principle does not apply: the consensus question is absence of evidence, not a binary choice on a continuous input. We also develop a complete economic model. Local coins are issued and retired by currency streams; security weight tracks value automatically as Intercoin weight adjusts at each epoch shuffle. Junior nodes detect corruption and earn lottery rewards for propagating Proofs of Corruption; vesting makes corruption economically irrational. The coin and content layers are strictly separated: regulators observe weight flows without learning amounts, coin types, identities, or rules.

Keywords

Cite

@article{arxiv.2605.22830,
  title  = {Intercloud: Eventual Consistency for Decentralised Economies via Chilling-Effect Consensus},
  author = {Gregory Magarshak},
  journal= {arXiv preprint arXiv:2605.22830},
  year   = {2026}
}

Comments

11 pages, 1 table, IEEE conference format. Companion paper to "The Magarshak Machine" (Magarshak, 2026)

R2 v1 2026-07-22T07:26:53.812Z