2019
DOI: 10.3390/math7080660
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Survey on the Figà–Talamanca Herz algebra

Abstract: EPFL SB-DO, MAA1, Station 8, CH-1015 Lausanne, Switzerland; antoine.derighetti@epfl.ch † This is an amplified version of a doctoral course (three hours) given at the international meeting "Abstract: This paper presents a self contained approach to the theory of convolution operators on locally compact groups (both commutative and non commutative) based on the use of the Figà -Talamanca Herz algebras. The case of finite groups is also considered.

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“…Proof. We only provide the argument for claim (3). Recall that Plancherel's theorem combined with the Cauchy-Schwarz inequality implies that we have, for…”
Section: The Herz-figa-talamanca Algebramentioning
confidence: 99%
See 1 more Smart Citation
“…Proof. We only provide the argument for claim (3). Recall that Plancherel's theorem combined with the Cauchy-Schwarz inequality implies that we have, for…”
Section: The Herz-figa-talamanca Algebramentioning
confidence: 99%
“…In order to make the definition of H G (B 1 , B 2 ) → L(B 1 , B 2 ) (as a closed subspace) meaningful, we assume of course that both spaces (B 1 , • (1) ) and (B 2 , • (2) ) are translation invariant, i.e., that T x B 1 ⊆ B 1 and T x B 2 ⊆ B 2 for any x ∈ G. As usual, we write L(B) instead of L(B, B) and, correspondingly, H G (B) for H G (B 1 , B 2 ) for the case B 1 = B = B 2 . For B = L p , the symbol CV p (G) is found in the literature (for "convolutors") instead of H G (L p ) (see [2,3]).…”
Section: Introductionmentioning
confidence: 99%