arXiv · 2601.20859
A counterexample to the Berger--Coburn conjecture
Abstract
Berger and Coburn proposed an endpoint boundedness criterion for Toeplitz operators on the Bargmann--Fock space in which the decisive quantity is the heat transform of the symbol at the borderline time $t=\tfrac14$, the time naturally singled out by the Weyl calculus under the Bargmann transform. We show that this criterion fails for general measurable symbols in every complex dimension $n\ge 1$. Concretely, we construct a measurable symbol $g\in L^2(\mathbb C^n,d\mu)$ such that $gk_a\in L^2(d\mu)$ for every normalized reproducing kernel $k_a$, and the associated Toeplitz form extends to a bounded operator on $H^2(\mathbb C^n,d\mu)$, but the heat transform $g^{(1/4)}$ is unbounded on $\mathbb C^n$. The example is obtained by summing translated bounded "blocks" whose Toeplitz norms are summable while their $t=\tfrac14$ heat profiles have fixed size. The blocks are produced by combining a Hilbert--Schmidt estimate for Weyl quantization with the Bargmann correspondence between Weyl and Toeplitz operators.
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Sam Looi. 2026-01-28. A counterexample to the Berger--Coburn conjecture. https://arxiv.org/abs/2601.20859
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