30-Lens interferometer for high-energy X-rays

Author:

Lyubomirskiy Mikhail,Snigireva Irina,Kohn Victor,Kuznetsov Sergey,Yunkin Vyacheslav,Vaughan Gavin,Snigirev Anatoly

Abstract

A novel high-energy multi-lens interferometer consisting of 30 arrays of planar compound refractive lenses is reported. Under coherent illumination each lens array creates a diffraction-limited secondary source. Overlapping such coherent beams produces an interference pattern demonstrating strong longitudinal functional dependence. The proposed multi-lens interferometer was tested experimentally at the 100 m-long ID11 ESRF beamline in the X-ray energy range from 30 to 65 keV. The interference pattern generated by the interferometer was recorded at fundamental and fractional Talbot distances. An effective source size (FWHM) of the order of 15 µm was determined from the first Talbot image, proving the concept that the multi-lens interferometer can be used as a high-resolution tool for beam diagnostics.

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

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1. Submicron Focusing of X-rays by Silicon Planar Compound Refractive Lenses;Nanobiotechnology Reports;2023-12

2. Determination of the Collimation Degree of a Coherent X-Ray Beam Using a Planar Multilens Interferometer;Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques;2023-10

3. Determining the Collimation Degree for a Coherent X-Ray Beam Using a Planar Multilens Interferometer;Поверхность. Рентгеновские, синхротронные и нейтронные исследования;2023-09-01

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5. Finite Voxel Size Compensation for Microprinting of Parabolic X-ray Lenses by Two-Photon Lithography;Moscow University Physics Bulletin;2023-04

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