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Regularity of Fourier integral operators with amplitudes in general Hörmander classes

Published 28 Mar 2020 in math.AP, math-ph, and math.MP | (2003.12878v1)

Abstract: We prove the global $Lp$-boundedness of Fourier integral operators that model the parametrices for hyperbolic partial differential equations, with amplitudes in classical H\"ormander classes $S{m}_{\rho, \delta}(\mathbb{R}n)$ for parameters $0<\rho\leq 1$, $0\leq \delta<1$. We also consider the regularity of operators with amplitudes in the exotic class $S{m}_{0, \delta}(\mathbb{R}n)$, $0\leq \delta< 1$ and the forbidden class $S{m}_{\rho, 1}(\mathbb{R}n)$, $0\leq\rho\leq 1.$ Furthermore we show that despite the failure of the $L2$-boundedness of operators with amplitudes in the forbidden class $S{0}_{1, 1}(\mathbb{R}n)$, the operators in question are bounded on Sobolev spaces $Hs(\mathbb{R}n)$ with $s>0.$ This result extends those of Y. Meyer and E. M. Stein to the setting of Fourier integral operators.

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