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Landauer-Based Economic Temperature in Blockspace Markets: Evidence from Bitcoin and Ethereum

Zouari, Michael ORCID: https://orcid.org/0009-0002-2228-713X, Alon, Ilan ORCID: https://orcid.org/0000-0002-6927-593X and Shtudiner, Zeev ORCID: https://orcid.org/0000-0003-1471-3565 (2026) Landauer-Based Economic Temperature in Blockspace Markets: Evidence from Bitcoin and Ethereum. Entropy, 28 (5). pp. 508-1. DOI https://doi.org/10.3390/e28050508

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Official URL: https://doi.org/10.3390/e28050508


Abstract

The Landauer principle motivates the definition of economic temperature as the monetary price of processing a bit irreversibly. No empirical test of this definition exists in transparent fee markets. This paper fills that gap using daily Bitcoin and Ethereum data, constructing canonical thermodynamic state variables and evaluating five diagnostic layers: state variable behavior, Maxwell-type integrability, Carnot-style efficiency bounds, nonlinear regime separation, and structural break sensitivity to protocol events. Bitcoin’s log-temperature behaves as a persistent mean-reverting process with an AR(1) coefficient of 0.97 and a half-life of 21 days; Ethereum is highly persistent, with weaker formal evidence of stationarity than Bitcoin. Maxwell integrability is frequency-dependent: Bitcoin passes all four relations at monthly frequency, whereas Ethereum passes two of four. Carnot-style evidence is the strongest: realized fee extraction efficiency stays well below the implied bound, with daily compliance exceeding 97% on both chains. Structural breaks around Bitcoin ordinals, EIP-1559, the merge, and Shanghai confirm that protocol changes reorganize the temperature relation. The thermodynamic framework provides structure that standard fee market analysis does not, including a first principles efficiency bound and a state space coherence test. The findings provide partial, frequency-dependent, and chain-specific empirical support for a Landauer-based thermodynamic description of blockspace markets.

Item Type:Article
Uncontrolled Keywords:Landauer principle; economic temperature; blockspace markets; Bitcoin; Ethereum; econophysics; Carnot efficiency; structural breaks
Divisions:Institute of Strategy and Management
Subjects:Finance
DOI:https://doi.org/10.3390/e28050508
ID Code:13281
Deposited By: MTMT SWORD
Deposited On:15 Sep 2026 14:50
Last Modified:15 Sep 2026 14:50

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