Relative entropy for coherent states in chiral CFT
arXiv:1903.07508 · doi:10.1007/s11005-019-01238-z
Abstract
We consider the relative entropy between the vacuum state and a state obtained by applying an exponentiated stress tensor to the vacuum of a chiral conformal field theory on the lightray. The smearing function of the stress tensor can be viewed as a vector field on the real line generating a diffeomorphism. We show that the relative entropy is equal to times the so-called Schwarzian action of the diffeomorphism. As an application of this result, we obtain a formula for the relative entropy between the vacuum and a solitonic state.
v2: 19pp, no figures. Extended more detailed version of v1, stronger results, refs. edited, minor presentation changes