Physics-inspired analysis of the two-class income distribution in the USA in 1983-2018
arXiv:2110.03140 · doi:10.1098/rsta.2021.0162
Abstract
The first part of this paper is a brief survey of the approaches to economic inequality based on ideas from statistical physics and kinetic theory. These include the Boltzmann kinetic equation, the time-reversal symmetry, the ergodicity hypothesis, entropy maximization, and the Fokker-Planck equation. The origins of the exponential Boltzmann-Gibbs distribution and the Pareto power law are discussed in relation to additive and multiplicative stochastic processes. The second part of the paper analyzes income distribution data in the USA for the time period 1983-2018 using a two-class decomposition. We present overwhelming evidence that the lower class (more than 90% of the population) is described by the exponential distribution, whereas the upper class (about 4% of the population in 2018) by the power law. We show that the significant growth of inequality during this time period is due to the sharp increase in the upper-class income share, whereas relative inequality within the lower class remains constant. We speculate that the expansion of the upper-class population and income shares may be due to increasing digitization and non-locality of the economy in the last 40 years.
18 pages, 8 figures, submitted to Philosophical Transactions of the Royal Society A for the special issue "Kinetic exchange models of societies and economies"
References in corpus (3)
Cited by in corpus (10)
- Physics-inspired analysis of the two-class income distribution in the USA in 1983-2018
- Evolutionary Dynamics of Social Inequality and Coincidence of Gini and Kolkata indices under Unrestricted Competition
- Sandpile Universality in Social Inequality: Gini and Kolkata Measures
- Success of Social Inequality Measures in Predicting Critical or Failure Points in Some Models of Physical Systems
- Kinetic Exchange Income Distribution Models with Saving Propensities: Inequality Indices and Self-Organised Poverty Level
- Kinetic Models of Wealth Distribution Having Extreme Inequality: Numerical Study of Their Stability Against Random Exchanges
- Wealth distribution on a dynamic complex network
- Kinetic modeling of economic markets with heterogeneous saving propensities
- Scaling in local to global condensation of wealth on sparse networks
- Relations Between the Inequality Indices Gini, Pietra and Kolkata: Theory and Data Analysis