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Refractive axicon for X-ray microscopy applications: design, optimization, and experiment. | LitMetric

AI Article Synopsis

  • In a full-field TXM setup, a condenser optical element condenses X-ray beams from synchrotron storage rings to illuminate samples.
  • Upcoming upgrades to synchrotron facilities will create challenges for TXM due to smaller X-ray beams, requiring innovative solutions.
  • This study introduces a refractive axicon as an X-ray beam shaper and explores various designs through analytical methods and numerical simulations, with initial testing conducted at the TOMCAT beamline in Switzerland.

Article Abstract

In a full-field transmission X-ray microscopy (TXM) setup, a condenser X-ray optical element is used to illuminate the sample by condensing the X-ray beam delivered by the synchrotron storage ring. On-going and future upgrades of synchrotron facilities to diffraction-limited storage rings will pose new challenges to these TXM setups, such as much smaller X-ray beams on the condenser. Here, we demonstrate that a refractive axicon can be used as an X-ray beam shaper to match the ring-shaped aperture of the condenser. Aiming at more efficient use of the incoming X-ray intensity, we explore several axicon designs both analytically and with numerical simulations. The axicons were produced by two-photon polymerization 3D printing on thin silicon nitride membrane substrates. The first characterization of the axicon was carried out at the TOMCAT beamline of the Swiss Light Source (Switzerland).

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Source
http://dx.doi.org/10.1364/OE.478114DOI Listing

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