Global space correlations of polarization, charge density, and electric field in electrolytes under the fixed-potential condition
arXiv:2605.17346
Abstract
We examine the thermal fluctuations of the polarization , the charge density , and the electric field in dilute electrolytes inserted between pararell metallic electrodes, where we fix the applied potential difference between the two electrodes. If the film thickness is shorter than the Debye screening length , the space correlation of the polarization and the electric field along the surface normal (in the direction) acuire global components inversely proportional to the film volume , which vary slowly along the axis and are homogeneous in the plane. The areal charge density on each electrode surface also has a component homogeneous on the surface, which produces the global electric fluctuations. On the other hand, if much exceeds , the global correlations of and become small in the bulk region outside the electric double layers, but that of remains almost unchanged by ions in the whole cell at fixed . The dielectric constant depends on and and is expressed in terms of the fluctuation variances of and and that of the noblocal surface charge density at fixed .
11 pages, 7 figures