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Ptychography with multilayer Laue lenses.

Adam Kubec1, Stefan Braun2, Sven Niese3

  • 1Institute for Materials Science and Max Bergmann Center of Biomaterials, Technische Universität Dresden, 01062 Dresden, Germany.

Journal of Synchrotron Radiation
|September 2, 2014
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Summary

Two new multilayer Laue lens designs were fabricated for X-ray focusing. These lenses enable efficient one- and two-dimensional focusing with advanced X-ray microscopy techniques.

Keywords:
X-ray nanofocusingmultilayer Laue lensptychographyscanning X-ray microscopy

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Area of Science:

  • Optics and X-ray instrumentation
  • Materials science for advanced optics

Background:

  • Multilayer Laue lenses (MLLs) are crucial for high-resolution X-ray focusing.
  • Developing advanced MLLs with tailored focal lengths and compact designs is essential for novel X-ray applications.

Purpose of the Study:

  • To design, fabricate, and characterize two novel multilayer Laue lens systems.
  • To investigate the performance of these lenses for both one- and two-dimensional X-ray focusing.
  • To demonstrate a compact, directly bonded assembly for two-dimensional focusing.

Main Methods:

  • Fabrication of two multilayer Laue lens designs with varying deposition thicknesses (48 µm and 53 µm) and focal lengths (20.0 mm and 12.5 mm at 20.0 keV).
  • Manufacturing of lenses for one- and two-dimensional focusing, including a directly bonded assembly for the latter.
  • Characterization of lens fabrication using a laboratory X-ray microscope.
  • Investigation of focusing properties using ptychography.

Main Results:

  • Successful fabrication of two distinct multilayer Laue lens systems with specified focal lengths.
  • Demonstration of one- and two-dimensional focusing capabilities.
  • A directly bonded assembly for two-dimensional focusing achieved a reduced inter-lens distance of 30 µm, eliminating the need for separate multilayer systems.

Conclusions:

  • The developed multilayer Laue lenses meet the design specifications for X-ray focusing applications.
  • The directly bonded assembly offers a practical and efficient solution for two-dimensional focusing.
  • These advancements in MLL technology pave the way for enhanced X-ray microscopy and related fields.