$L^p$-estimates for FIO-cone multipliers

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Buschenhenke, Stefan, Dendrinos, Spyridon, Ikromov, Isroil A., Müller, Detlef
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912693543239680
author Buschenhenke, Stefan
Dendrinos, Spyridon
Ikromov, Isroil A.
Müller, Detlef
author_facet Buschenhenke, Stefan
Dendrinos, Spyridon
Ikromov, Isroil A.
Müller, Detlef
contents The classical cone multipliers are Fourier multiplier operators which localize to narrow $1/R$-neighborhoods of the truncated light cone in frequency space. By composing such convolution operators with suitable translation invariant Fourier integral operators (FIOs), we obtain what we call FIO-cone multipliers. We introduce and study classes of such FIO-cone multipliers on $\Bbb R^3$, in which the phase functions of the corresponding FIOs are adapted in a natural way to the geometry of the cone and may even admit singularities at the light cone. By building on methods developed by Guth, Wang and Zhang in their proof of the cone multiplier conjecture in $\Bbb R^3,$ we obtain $L^p$-estimates for FIO-cone multipliers in the range $4/3\le p\le 4$ which are stronger by the factor $R^{-|1/p-1/2|}$ than what a direct application of the method of Seeger, Sogge and Stein for estimating FIOs would give. An important application of our theory is to maximal averages along smooth analytic surfaces in $\Bbb R^3.$ It allows to confirm a conjecture on the the critical Lebesgue exponent for a prototypical surface from a small class of ``exceptional'' surfaces, for which this conjecture had remained open.
format Preprint
id arxiv_https___arxiv_org_abs_2511_05243
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle $L^p$-estimates for FIO-cone multipliers
Buschenhenke, Stefan
Dendrinos, Spyridon
Ikromov, Isroil A.
Müller, Detlef
Classical Analysis and ODEs
42B15, 35S30, 42B25
The classical cone multipliers are Fourier multiplier operators which localize to narrow $1/R$-neighborhoods of the truncated light cone in frequency space. By composing such convolution operators with suitable translation invariant Fourier integral operators (FIOs), we obtain what we call FIO-cone multipliers. We introduce and study classes of such FIO-cone multipliers on $\Bbb R^3$, in which the phase functions of the corresponding FIOs are adapted in a natural way to the geometry of the cone and may even admit singularities at the light cone. By building on methods developed by Guth, Wang and Zhang in their proof of the cone multiplier conjecture in $\Bbb R^3,$ we obtain $L^p$-estimates for FIO-cone multipliers in the range $4/3\le p\le 4$ which are stronger by the factor $R^{-|1/p-1/2|}$ than what a direct application of the method of Seeger, Sogge and Stein for estimating FIOs would give. An important application of our theory is to maximal averages along smooth analytic surfaces in $\Bbb R^3.$ It allows to confirm a conjecture on the the critical Lebesgue exponent for a prototypical surface from a small class of ``exceptional'' surfaces, for which this conjecture had remained open.
title $L^p$-estimates for FIO-cone multipliers
topic Classical Analysis and ODEs
42B15, 35S30, 42B25
url https://arxiv.org/abs/2511.05243