High fidelity, general reflection-mode coherent diffractive imaging with a tabletop EUV source

CLEO: 2014 ◽  
2014 ◽  
Author(s):  
daniel adams ◽  
Bosheng Zhang ◽  
Matthew Seaberg ◽  
Dennis Gardner ◽  
Elisabeth Shanblatt ◽  
...  
Author(s):  
Elisabeth Shanblatt ◽  
Matthew Seaberg ◽  
Bosheng Zhang ◽  
Dennis Gardner ◽  
Margaret Murnane ◽  
...  

Author(s):  
Giulia F. Mancini ◽  
Dennis F. Gardner ◽  
Elisabeth R. Shanblatt ◽  
Christina L. Porter ◽  
Michael Tanksalvala ◽  
...  

2011 ◽  
Vol 84 (14) ◽  
Author(s):  
A. J. Morgan ◽  
A. J. D’Alfonso ◽  
A. V. Martin ◽  
A. I. Bishop ◽  
H. M. Quiney ◽  
...  

Nanoscale ◽  
2017 ◽  
Vol 9 (35) ◽  
pp. 13153-13158 ◽  
Author(s):  
Jong Woo Kim ◽  
Andrew Ulvestad ◽  
Sohini Manna ◽  
Ross Harder ◽  
Eric E. Fullerton ◽  
...  

The formation mechanism of five-fold multiply twinned nanoparticles has been a long-term topic because of their geometrical incompatibility.


2008 ◽  
Author(s):  
Andreas Menzel ◽  
Pierre Thibault ◽  
Martin Dierolf ◽  
Cameron M. Kewish ◽  
Oliver Bunk ◽  
...  

2018 ◽  
Vol 51 (1) ◽  
pp. 167-174 ◽  
Author(s):  
Wen Hu ◽  
Xiaojing Huang ◽  
Hanfei Yan

This article reports a theoretical study on the reconstruction artefacts in Bragg coherent diffractive imaging caused by dynamical diffraction effects. It is shown that, unlike the absorption and refraction effects that can be corrected after reconstruction, dynamical diffraction effects have profound impacts on both the amplitude and the phase of the reconstructed complex object, causing strong artefacts. At the dynamical diffraction limit, the reconstructed shape is no longer correct, as a result of the strong extinction effect. Simulations for hemispherical particles of different sizes show the type, magnitude and extent of the dynamical diffraction artefacts, as well as the conditions under which they are negligible.


2011 ◽  
Vol 111 (8) ◽  
pp. 1184-1188 ◽  
Author(s):  
Corey T. Putkunz ◽  
Jesse N. Clark ◽  
David J. Vine ◽  
Garth J. Williams ◽  
Eugeniu Balaur ◽  
...  

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