Flux control creates flat bands in a frustrated bosonic lattice that suppress heat loss and raise Otto-cycle work extraction while Stirling cycles gain work over wider ranges at lower efficiency.
Sutherland, Physical Review B34, 5208 (1986)
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Classical random walks on finite 2D lattices of varying connectivity show diffusive spreading insensitive to lattice details, with mass fractal dimension 1.50±0.03 and hull dimension 1.37±0.03 that approach Brownian-motion values with increasing steps.
citing papers explorer
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Bosonic Working Media in a Frustrated Rhombi Chain: Otto and Stirling Cycles from Flat Bands, Caging, and Flux Control
Flux control creates flat bands in a frustrated bosonic lattice that suppress heat loss and raise Otto-cycle work extraction while Stirling cycles gain work over wider ranges at lower efficiency.
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Finite-size scaling properties of classical random walk on various two-dimensional lattices
Classical random walks on finite 2D lattices of varying connectivity show diffusive spreading insensitive to lattice details, with mass fractal dimension 1.50±0.03 and hull dimension 1.37±0.03 that approach Brownian-motion values with increasing steps.