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Sharp constants for Moser‐Trudinger inequalities on spheres in complex space ℂn

2004/08/26 by William S. Cohn, Guozhen Lu · 9 citations
Mathematics · #Analytic and geometric function theory #Nonlinear Partial Differential Equations #Numerical methods in inverse problems

paper · doi:10.1002/cpa.20043

Abstract

Abstract The main results of this paper concern sharp constants for the Moser‐Trudinger inequalities on spheres in complex space ℂ n . We derive Moser‐Trudinger inequalities for smooth functions and holomorphic functions with different sharp constants (see Theorem 1.1). The sharp Moser‐Trudinger inequalities under consideration involve the complex tangential gradients for the functions and thus we have shown here such inequalities in the CR setting. Though there is a close connection in spirit between inequalities proven here on complex spheres and those on the Heisenberg group for functions with compact support in any finite domain proven earlier by the same authors [17], derivation of the sharp constants for Moser‐Trudinger inequalities on complex spheres are more complicated and difficult to obtain than on the Heisenberg group. Variants of Moser‐Onofri‐type inequalities are also given on complex spheres as applications of our sharp inequalities (see Theorems 1.2 and 1.3). One of the key ingredients in deriving the main theorems is a sharp representation formula for functions on the complex spheres in terms of complex tangential gradients (see Theorem 1.4). © 2004 Wiley Periodicals, Inc.

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