Finite heat kernel expansions on the real line
Mathematical Physics
2012-04-25 v2 math.MP
Abstract
Let L=d^2/dx^2+u(x) be the one-dimensional Schrodinger operator and H(x,y,t) be the corresponding heat kernel. We prove that the nth Hadamard's coefficient H_n(x,y) is equal to 0 if and only if there exists a differential operator M of order 2n-1 such that L^{2n-1}=M^2. Thus, the heat expansion is finite if and only if the potential u(x) is a rational solution of the KdV hierarchy decaying at infinity studied in [1,2]. Equivalently, one can characterize the corresponding operators L as the rank one bispectral family in [8].
Cite
@article{arxiv.math-ph/0504046,
title = {Finite heat kernel expansions on the real line},
author = {Plamen Iliev},
journal= {arXiv preprint arXiv:math-ph/0504046},
year = {2012}
}
Comments
7 pages