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 "identifier": "kaal:entity:microsecond-updates",
 "name": "Microsecond updates",
 "termCode": "microsecond-updates",
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 "author": {
  "@type": "Person",
  "name": "Wulf A. Kaal",
  "identifier": "https://orcid.org/0000-0003-0757-275X"
 },
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   "@type": "Claim",
   "@id": "https://wulfkaal.github.io/claims/5225296-020",
   "identifier": "kaal:claim:5225296-020",
   "text": "Recursive zk-SNARK optimizations compress proof generation from seconds to milliseconds while preserving constant-time verification, which is what makes zero-knowledge voting deployable in a protocol running microsecond-scale reputation updates.",
   "abstract": "compress proof generation from seconds to milliseconds while preserving constant-time verification, aligning with SPoS's need for rapid governance operations under microsecond-scale reputation updates",
   "citation": "Wulf A. Kaal, Cryptographic Foundations and Interdisciplinary Dimensions of the Secure Proof of Stake (SPoS) Conse (2025). SSRN: https://ssrn.com/abstract=5225296",
   "datePublished": "2025",
   "claim_type": "mechanism",
   "confidence": "evidenced",
   "is_failure_mode": false,
   "scope_conditions": [
    "with recursive proof constructions"
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  {
   "@type": "Claim",
   "@id": "https://wulfkaal.github.io/claims/5225296-035",
   "identifier": "kaal:claim:5225296-035",
   "text": "Microsecond-scale reputation updates defeat Sybil attacks by imposing an operational burden that makes maintaining multiple coherent identities across microsecond intervals computationally infeasible.",
   "abstract": "This temporal granularity imposes a significant operational burden on attackers, rendering it computationally infeasible to maintain multiple coherent identities across microsecond intervals",
   "citation": "Wulf A. Kaal, Cryptographic Foundations and Interdisciplinary Dimensions of the Secure Proof of Stake (SPoS) Conse (2025). SSRN: https://ssrn.com/abstract=5225296",
   "datePublished": "2025",
   "claim_type": "mechanism",
   "confidence": "argued",
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   "scope_conditions": [
    "requires real-time behavioral signals such as block proposal frequency, vote consistency, and network latency"
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   "@type": "Claim",
   "@id": "https://wulfkaal.github.io/claims/5225296-036",
   "identifier": "kaal:claim:5225296-036",
   "text": "Sub-millisecond reputation refresh rates reduce successful Sybil attack probability by seventy percent in simulation.",
   "abstract": "Simulations demonstrate a 70% reduction in successful Sybil attack probability with sub-millisecond refresh rates, leveraging the rapid interaction pace of modern blockchain networks",
   "citation": "Wulf A. Kaal, Cryptographic Foundations and Interdisciplinary Dimensions of the Secure Proof of Stake (SPoS) Conse (2025). SSRN: https://ssrn.com/abstract=5225296",
   "datePublished": "2025",
   "claim_type": "empirical",
   "confidence": "evidenced",
   "is_failure_mode": false,
   "scope_conditions": [
    "sub-millisecond refresh rates"
   ],
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   "@type": "Claim",
   "@id": "https://wulfkaal.github.io/claims/5225296-038",
   "identifier": "kaal:claim:5225296-038",
   "text": "Neither weighted voting nor microsecond updates suffices alone; together they form a dual-layered defense because weighted voting addresses static identity proliferation while microsecond updates address dynamic behavioral exploitation.",
   "abstract": "Together, weighted voting and microsecond updates form a dual-layered defense, addressing both static identity proliferation and dynamic behavioral exploitation",
   "citation": "Wulf A. Kaal, Cryptographic Foundations and Interdisciplinary Dimensions of the Secure Proof of Stake (SPoS) Conse (2025). SSRN: https://ssrn.com/abstract=5225296",
   "datePublished": "2025",
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 "description": "4 claims in the published works of Wulf A. Kaal carry the concept tag 'microsecond-updates'. Derived node: a roster, not an adjudicated definition."
}