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WEIGHTED BESOV AND TRIEBEL–LIZORKIN SPACES ASSOCIATED WITH OPERATORS AND APPLICATIONS

HUY-QUI BUI, THE ANH BUI, XUAN THINH DUONG

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Source: Crossref

Published: Jan 1, 2020

DOI: 10.1017/fms.2020.6

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Source abstract

Let XX be a space of homogeneous type and LL be a nonnegative self-adjoint operator on L2(X)L^{2}(X) satisfying Gaussian upper bounds on its heat kernels. In this paper, we develop the theory of weighted Besov spaces ${\dot{B}}_{p,q,w}^{\unicode[STIX]{x1D6FC},L}(X)$ and weighted Triebel–Lizorkin spaces ${\dot{F}}_{p,q,w}^{\unicode[STIX]{x1D6FC},L}(X)$ associated with the operator LL for the full range 0<p,q⩽∞0<p,q\leqslant \infty , $\unicode[STIX]{x1D6FC}\in \mathbb{R}$ and ww being in the Muckenhoupt weight class A∞A_{\infty } . Under rather weak assumptions on LL as stated above, we prove that our new spaces satisfy important features such as continuous characterizations in terms of square functions, atomic decompositions and the identifications with some well-known function spaces such as Hardy-type spaces and Sobolev-type spaces. One of the highlights of our result is the characterization of these spaces via noncompactly supported functional calculus. An important by-product of this characterization is the characterization via the heat kernel for the full range of indices. Moreover, with extra assumptions on the operator LL , we prove that the new function spaces associated with LL coincide with the classical function spaces. Finally we apply our results to prove the boundedness of the fractional power of LL , the spectral multiplier of LL in our new function spaces and the dispersive estimates of wave equations.

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WEIGHTED BESOV AND TRIEBEL–LIZORKIN SPACES ASSOCIATED WITH OPERATORS AND APPLICATIONS — Mathematical Frontier Network