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The Maxwell Demon and Market Efficiency

2003/11/15 by Roger D. Jones, Jones, Roger D., Sven G. Redsun +5
Economics, Econometrics and Finance · Physics and Astronomy · #Classical Physics (physics.class-ph) #FOS: Economics and business #FOS: Physical sciences #General Physics (physics.gen-ph) #Trading and Market Microstructure (q-fin.TR) #physics.class-ph #physics.gen-ph #q-fin.TR

paper · pdf · doi:10.48550/arxiv.physics/0311074

15 pages, 6 figures

arxiv created 2003/11/15 · arxiv updated 2009/12/01

Abstract

This paper addresses two seemingly unrelated problems, (a) What is the entropy and energy accounting in the Maxwell Demon problem? and (b) How can the efficiency of markets be measured? Here we show, in a simple model for the Maxwell Demon, the entropy of the universe increases by an amount eta=0.839995520 in going from a random state to an ordered state and by an amount eta*=2.731382 in going from one sorted state to another sorted state. We calculate the efficiency of an engine driven by the Maxwell sorting process. The efficiency depends only on the temperatures of the particles and of the computer the Demon uses to sort the particles. We also show the approach is general and create a simple model of a stock market in which the Limit Trader plays the role of the Maxwell Demon. We use this model to define and measure market efficiency.

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