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  4. Specific aspects of roughness and interface diffusion in non-periodic Mo/Si multilayers
 
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2014
Conference Paper
Title

Specific aspects of roughness and interface diffusion in non-periodic Mo/Si multilayers

Abstract
Most of the currently used reflective coatings for EUV and X-ray mirrors are periodic nanometer multilayers. Depending on the number of periods and the absorption in the multilayer stack a certain band width of the incoming radiation can be reflected. In order to increase the integral reflectance or to accept larger ranges of incidence angles, non-periodic multilayers are needed. With the transition from periodic to non-periodic multilayers new challenges arise for the deposition process. Since the reflectance spectra are sensitive to every single layer thickness a precise coating control and an exact knowledge of the interface reactions are required. Furthermore substrate roughness influences the reflectance spectra. With an advanced coating process using additional ion bombardment during thin film growth the integrated reflectance of broadband mirrors can be conserved even for an initial substrate roughness of about 0.7 nm rms.
Author(s)
Braun, Stefan
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Gawlitza, Peter  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Menzel, Maik
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Friedrich, Wolfgang
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Schmidt, Jürgen  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Leson, Andreas  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Mainwork
Advances in X-Ray/EUV Optics and Components IX  
Conference
Conference "Advances in X-Ray/EUV Optics and Components" 2014  
DOI
10.1117/12.2062193
Language
English
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Keyword(s)
  • antireflection coatings

  • coating techniques

  • light reflection

  • mirrors

  • molybdenum

  • optical fabrication

  • optical multilayers

  • silicon

  • x-ray optics

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