Data synchronization: Difference between revisions

From formulasearchengine
Jump to navigation Jump to search
en>Niceguyedc
m WPCleaner v1.33 - Repaired 1 link to disambiguation page - (You can help) - Mirror (computing)
 
Line 1: Line 1:
In [[mathematics]], a '''de Branges space''' (sometimes written '''De Branges space''') is a concept in [[functional analysis]] and is constructed from a '''de Branges function'''.
Marvella is what you can contact her but it's not the most feminine name out there. For years I've been operating as a payroll clerk. What I love doing is taking part in baseball but I haven't made a dime with it. For a whilst she's been in South Dakota.<br><br>Check out my website - std home test ([http://fankut.com/index.php?do=/profile-2572/info/ click the up coming site])
 
The concept is named after [[Louis de Branges]] who proved numerous results regarding these spaces, especially as [[Hilbert space]]s, and used those results to prove the [[Bieberbach conjecture]].
==De  Branges functions==
A '''de Branges function''' is an [[entire function]] ''E'' from <math>\mathbb{C}</math> to <math>\mathbb{C}</math> that satisfies the inequality <math>|E(z)| > |E(\bar z)|</math>, for all ''z'' in the [[upper half-plane|upper half of the complex plane]] <math>\mathbb{C}^+ = \{z \in \mathbb{C} | {\rm Im}(z) > 0\}</math>.
 
==Definition 1==
Given a de Branges function ''E'', the de Branges space ''B''(''E'') is defined as the set of all [[entire function]]s ''F'' such that
 
: <math>F/E,F^{\#}/E \in H_2(\mathbb{C}^+)</math>
 
where:
 
* <math>\mathbb{C}^+ = \{z \in \mathbb{C} | {\rm Im(z)} > 0\}</math> is the open upper half of the complex plane.
* <math>F^{\#}(z) = \overline{F(\bar z)}</math>.
* <math>H_2(\mathbb{C}^+)</math> is the usual [[Hardy space]] on the open upper half plane.
 
==Definition 2==
A de Branges space can also be defined as all entire functions ''F'' satisfying all of the following conditions:
 
* <math>\int_{\mathbb{R}} |(F/E)(\lambda)|^2 d\lambda < \infty </math>
* <math>|(F/E)(z)|,|(F^{\#}/E)(z)|  \leq C_F(\operatorname{Im}(z))^{(-1/2)}, \forall z \in \mathbb{C}^+</math>
 
==As Hilbert spaces==
Given a de Branges space ''B''(''E''). Define the scalar product:
 
:<math>[F,G]=\frac{1}{\pi} \int_{\mathbb{R}} \overline{F(\lambda)} G(\lambda) \frac{d\lambda}{|E(\lambda)|^2}.</math>
 
A de Branges space with such a scalar product can be proven to be a [[Hilbert space]].
 
==References==
 
* {{cite journal|author=Christian Remling|title=Inverse spectral theory for one-dimensional Schrödinger operators: the A function|journal=Math. Z.|volume=245|year=2003}}
 
[[Category:Operator theory]]
[[Category:Hardy spaces]]

Latest revision as of 03:12, 19 August 2014

Marvella is what you can contact her but it's not the most feminine name out there. For years I've been operating as a payroll clerk. What I love doing is taking part in baseball but I haven't made a dime with it. For a whilst she's been in South Dakota.

Check out my website - std home test (click the up coming site)