English

A thermodynamic cycle for the solar cell

Statistical Mechanics 2017-03-03 v2 Quantum Physics

Abstract

A solar cell is a heat engine, but textbook treatments are not wholly satisfactory from a thermodynamic standpoint, since they present solar cells as directly converting the energy of light into electricity, and the current in the circuit as maintained by an electrostatic potential. We propose a thermodynamic cycle in which the gas of electrons in the p phase serves as the working substance. The interface between the p and n phases acts as a self-oscillating piston that modulates the absorption of heat from the photons so that it may perform a net positive work during a complete cycle of its motion, in accordance with the laws of thermodynamics. We draw a simple hydrodynamical analogy between this model and the "putt-putt"' engine of toy boats, in which the interface between the water's liquid and gas phases serves as the piston. We point out some testable consequences of this model.

Keywords

Cite

@article{arxiv.1606.03819,
  title  = {A thermodynamic cycle for the solar cell},
  author = {Robert Alicki and David Gelbwaser-Klimovsky and Alejandro Jenkins},
  journal= {arXiv preprint arXiv:1606.03819},
  year   = {2017}
}

Comments

17 pages, 9 figures. v2: Clarified use of "local" temperature in Sec. V and added corresponding plot. Other minor points elucidated, references improved. To appear in Annals of Physics

R2 v1 2026-06-22T14:23:40.588Z