Correction of the X-ray wavefront from compound refractive lenses using 3D printed refractive structures

Author:

Dhamgaye VishalORCID,Laundy DavidORCID,Baldock SaraORCID,Moxham ThomasORCID,Sawhney KawalORCID

Abstract

A refractive phase corrector optics is proposed for the compensation of fabrication error of X-ray optical elements. Here, at-wavelength wavefront measurements of the focused X-ray beam by knife-edge imaging technique, the design of a three-dimensional corrector plate, its fabrication by 3D printing, and use of a corrector to compensate for X-ray lens figure errors are presented. A rotationally invariant corrector was manufactured in the polymer IP-STM using additive manufacturing based on the two-photon polymerization technique. The fabricated corrector was characterized at the B16 Test beamline, Diamond Light Source, UK, showing a reduction in r.m.s. wavefront error of a Be compound refractive Lens (CRL) by a factor of six. The r.m.s. wavefront error is a figure of merit for the wavefront quality but, for X-ray lenses, with significant X-ray absorption, a form of the r.m.s. error with weighting proportional to the transmitted X-ray intensity has been proposed. The knife-edge imaging wavefront-sensing technique was adapted to measure rotationally variant wavefront errors from two different sets of Be CRL consisting of 98 and 24 lenses. The optical aberrations were then quantified using a Zernike polynomial expansion of the 2D wavefront error. The compensation by a rotationally invariant corrector plate was partial as the Be CRL wavefront error distribution was found to vary with polar angle indicating the presence of non-spherical aberration terms. A wavefront correction plate with rotationally anisotropic thickness is proposed to compensate for anisotropy in order to achieve good focusing by CRLs at beamlines operating at diffraction-limited storage rings.

Funder

European Union's Horizon 2020 research and innovation programme under the Marie Sklodowska-Curie Actions awarded to the Science and Technology Facilities Council, UK

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

Cited by 13 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. X-ray lens figure errors retrieved by deep learning from several beam intensity images;Journal of Synchrotron Radiation;2024-07-23

2. Soft X-ray wavefront sensing at an ellipsoidal mirror shell;Journal of Synchrotron Radiation;2024-06-06

3. Wavefront analysis and phase correctors design using SHADOW;Journal of Synchrotron Radiation;2024-04-23

4. X-ray focusing below 3 nm with aberration-corrected multilayer Laue lenses;Optics Express;2024-04-16

5. Alvarez varifocal X-ray lens;Nature Communications;2023-07-31

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