Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Explicit interpolation bounds between Hardy~space and \(L^{2}\) - MaRDI portal

Explicit interpolation bounds between Hardy~space and \(L^{2}\) (Q2873589)

From MaRDI portal





scientific article; zbMATH DE number 6250153
Language Label Description Also known as
English
Explicit interpolation bounds between Hardy~space and \(L^{2}\)
scientific article; zbMATH DE number 6250153

    Statements

    24 January 2014
    0 references
    dyadic BMO
    0 references
    interpolation of operators
    0 references
    norm estimates
    0 references
    Explicit interpolation bounds between Hardy~space and \(L^{2}\) (English)
    0 references
    0 references
    0 references
    The authors improve the previously known bounds for the norm of bounded operators acting on \(L^p(\mathbb R^n)\) for \(2\leq p<\infty\). The result is done by complex interpolation using dyadic \(BMO\) and \(L^2\) as extreme points. Namely they show that if a linear operator is of strong \((L^2,L^2)\)-type with norm \(A\) and \((L^\infty, dBMO)\)-type with norm \(B\) then it is also of strong type \((L^p,L^p)\) for \(2\leq p<\infty\) and its norm is bounded by \(2^{n+4/p} p(1+1/p)^{p+2}(p+1)^{1/p} A^{2/p} B^{1-2/p}\).NEWLINENEWLINEThe main new ingredient in the proof uses an optimal dyadic `good lambda' inequality. Also the dual version is presented as a corollary, using dyadic \(H^1\).
    0 references
    0 references

    Identifiers