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NanoMAX: a hard x-ray nanoprobe beamline at MAX IV

SPIE Proceedings, 2013
We describe the design of the NanoMAX beamline to be built among the first phase beamlines of the MAX IV facility in Lund, Sweden. NanoMAX will be a hard X-ray imaging beamline providing down to 10 nm in direct spatial resolution, enabling investigations of very small heterogeneous samples exploring methods of diffraction, scattering, absorption, phase
Ulf Johansson   +2 more
openaire   +1 more source

Studying single nanocrystals under high pressure using an x-ray nanoprobe

Review of Scientific Instruments, 2011
In this report, we demonstrate the feasibility of applying a 250-nm focused x-ray beam to study a single crystalline NbSe3 nanobelt under high-pressure conditions in a diamond anvil cell. With such a small probe, we not only resolved the distribution and morphology of each individual nanobelt in the x-ray fluorescence maps but also obtained the ...
Lin, Wang   +7 more
openaire   +2 more sources

Optimization of a multilayer Laue lens system for a hard x-ray nanoprobe

Journal of Optics, 2013
Detailed designs of a multilayer Laue lens system for a hard x-ray nanoprobe, including flat and wedged types, are presented, to realize nanoscale point focus and high diffraction efficiency simultaneously. The difficulty of movement and alignment for lens, aperture and sample are considered in the optimization process.
Hui Jiang   +6 more
openaire   +1 more source

Design of a Hard X-Ray Nanoprobe based on FZP

A high-resolution hard X-ray nanoprobe (HXNP) based on Fresnel Zone plate (FZP) was designed. The HXNP relies on a compact, high stiffness, low heat dissipation and low vibration design philosophy and utilizes FZP as nanofocusing optics. The optical layout and overall mechanical design of the HXNP were introduced.
Liao, Keliang   +7 more
openaire   +1 more source

C-11 Nanotomography at the Argonne Hard X-ray Nanoprobe Beamline

Powder Diffraction, 2009
The Hard X-ray Nanoprobe Beamline is one of the featured instruments of the new Center for Nanoscale Materials at Argonne National Laboratory [1]. Located at sector 26 of the Advanced Photon Source, the Nanoprobe will explore nanoscale objects with an initial spatial resolution of 30 nanometers, using x-ray fluorescence spectroscopy, transmission ...
R.P. Winarski   +4 more
openaire   +1 more source

Nanoscopium: a Scanning Hard X-ray Nanoprobe Beamline at Synchrotron Soleil

AIP Conference Proceedings, 2010
Nanoscopium is the single scanning hard X‐ray nano‐probe beamline planned at SOLEIL. This ∼155 m long beamline will fully exploit the high brilliance and coherence characteristics of the X‐ray beam both for diffraction limited focusing and for contrast formation.
A. Somogyi   +6 more
openaire   +1 more source

Upcoming soft x-ray nanoprobe beamline at NSLS-II

X-Ray Nanoimaging: Instruments and Methods VI, 2023
Wen Hu   +8 more
openaire   +1 more source

Application of synchrotron X-ray imaging technology in cellular imaging of nanoprobes

SCIENTIA SINICA Chimica, 2023
Jinru Han, Wenzhi Ren, Jie Lin, Aiguo Wu
openaire   +1 more source

Investigation of materials at the nanoscale using hard X-ray nanoprobes

Acta Crystallographica Section A Foundations and Advances, 2022
openaire   +1 more source

The hard X-ray nanoprobe beamline at the SSRF

Nuclear Science and Techniques
Yan He   +8 more
openaire   +1 more source

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