Nonisospectral Integrability and Exact Current Fluctuations in the Two-Dimensional SSEP
arXiv:2608.08480
Abstract
We study annealed current fluctuations in the two-dimensional symmetric simple exclusion process (SSEP) across a circular passive counting boundary. The initial average density is inside a disk of radius and outside, and the observable is the net decrease of the particle number in the disk over a finite time. Using convexity of the macroscopic fluctuation theory action and rotational averaging, we show that the minimizer of the full two-dimensional variational problem may be chosen radially symmetric. For the resulting radial problem, a suitable change of variables leads to a nonisospectral formulation on the half-line. Combining the associated scattering construction with a scalar factorization, we obtain a closed expression for the scaled cumulant generating function and hence the annealed large-deviation statistics of the current.
More rigorous discussion of the SCGF calculation is provided. A preliminary appendix is included in the source code and will be refined soon