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Optics for coherent X-ray applications.

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TLDR
Developments of optics for coherent X-ray applications and their role in diffraction-limited storage rings are described.
Abstract
Developments of X-ray optics for full utilization of diffraction-limited storage rings (DLSRs) are presented. The expected performance of DLSRs is introduced using the design parameters of SPring-8 II. To develop optical elements applicable to manipulation of coherent X-rays, advanced technologies on precise processing and metrology were invented. With propagation-based coherent X-rays at the 1 km beamline of SPring-8, a beryllium window fabricated with the physical-vapour-deposition method was found to have ideal speckle-free properties. The elastic emission machining method was utilized for developing reflective mirrors without distortion of the wavefronts. The method was further applied to production of diffraction-limited focusing mirrors generating the smallest spot size in the sub-10 nm regime. To enable production of ultra-intense nanobeams at DLSRs, a low-vibration cooling system for a high-heat-load monochromator and advanced diagnostic systems to characterize X-ray beam properties precisely were developed. Finally, new experimental schemes for combinative nano-analysis and spectroscopy realised with novel X-ray optics are discussed.

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Citations
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Journal ArticleDOI

Diffraction-limited storage rings - a window to the science of tomorrow.

TL;DR: This article summarizes the contributions in this special issue on Diffraction-Limited Storage Rings and analyses the progress in accelerator technology enabling a significant increase in brightness and coherent fraction of the X-ray light provided by storage rings.
Journal ArticleDOI

Overview of the SACLA facility.

TL;DR: An overview of SACLA operating as a user facility and the updated status of the light source and the beamline is summarized.
Journal ArticleDOI

New developments in high-pressure X-ray diffraction beamline for diamond anvil cell at SPring-8

TL;DR: An overview of the recently renovated high-pressure X-ray diffraction (XRD) BL10XU beamline for the diamond anvil cell at SPring-8 is presented in this article.
Journal ArticleDOI

Design of the mirror optical systems for coherent diffractive imaging at the SPB/SFX instrument of the European XFEL

TL;DR: In this article, the authors present the design and simulated performance of two state-of-the-art Kirkpatrik-Baez mirror systems that form the primary foci of the single particles, clusters and biomolecules and serial femtosecond crystallography (SPB/SFX) instrument of the European XFEL.
References
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Journal ArticleDOI

Interference effects between independent gamma rays.

TL;DR: Clear intensity correlations are predicted within a reasonable counting time, as the experiment is greatly benefited by the pulsed time structure and high brilliance of the future dedicated synchrotron radiation sources.
Journal ArticleDOI

Hard-X-ray imaging optics based on four aspherical mirrors with 50 nm resolution.

TL;DR: Ultraprecise imaging optics, which consists of two sets of elliptical mirrors and hyperbolic mirrors aligned perpendicular to each other, is developed to realize high-resolution and achromatic full-field hard-X-ray microscopy.
Journal ArticleDOI

Image quality improvement in a hard X-ray projection microscope using total reflection mirror optics

TL;DR: Mutual relations between figure errors and intensity uniformities of diverging X-ray beams have been investigated using a wave-optical simulator and indicate that figure errors in relatively short spatial wavelength ranges lead to high-contrast interference fringes.
Journal ArticleDOI

Error analysis of ellipsoidal mirrors for soft X-ray focusing by wave-optical simulation

TL;DR: In this article, the effects of figure errors on the focusing performance through wave-optical calculations based on the Fresnel?Kirchhoff diffraction theory, assuming coherent soft X-rays.
Journal ArticleDOI

Coherent x-ray zoom condenser lens for diffractive and scanning microscopy.

TL;DR: The proposed apodized-illumination method will be useful in highly efficient imaging with ultimate storage ring sources, and will also open the way to single-shot coherent diffraction microscopy of extended objects with x-ray free-electron lasers.
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