Multilayer mirror systems to form hard X-ray beams

Author:

Akhsakhalyan Anton,Akhsakhlyan Aram,Kharitonov Alexander,Kluenkov Eugenie,Murav’ev Vladimir,Salashchenko Nikolay

Abstract

AbstractThis paper is an overview of the research activities carried out in the past five years at the Institute for Physics of Microstructures RAS and “X-ray” Company towards the manufacture of multilayer mirror systems capable of forming X-ray beams in the subnanometer range of wavelengths. The systems fabrication technology is presented, including techniques for producing supersmooth surfaces of specified shape, methods of graded multilayer structure deposition on such surfaces, and the principles of designing optimal mirror parameters. The characteristics of a quadrelliptical reflector—a novel high light-gathering power four-corner focusing system—are reported.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy

Reference6 articles.

1. Parallel - beam coupling into channel - cut monochromators using curved graded multilayers pp http dx doi org;Göbel;Appl Phys,1995

2. and Long wave ray radiation mirrors http dx doi org;Gaponov;Commun,1981

3. Formation of Optical Images by http dx doi org;Kirkpatrick;Opt Soc Am,1948

4. and Improved graded multilayer mirrors for XRD applications ray;Michaelsen;Anal,2000

5. Low - less reflection coating using absorbing materials http dx doi org;Spiller;Phys Lett,1972

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