Hard x-ray grazing-incidence ptychography: large field-of-view nanostructure imaging with ultra-high surface sensitivity

Author:

Jørgensen P. S.,Besley L.ORCID,Slyamov A. M.1,Diaz A.2ORCID,Guizar-Sicairos M.23ORCID,Odstrčil M.24,Holler M.2,Silvestre C.5,Chang B.5,Detlefs C.6ORCID,Andreasen J. W.ORCID

Affiliation:

1. Xnovo Technology ApS

2. Paul Scherrer Institut

3. École Polytechnique Fédérale de Lausanne (EPFL)

4. Carl Zeiss SMT

5. Technical University of Denmark, DTU Nanolab

6. European Synchrotron Radiation Facility

Abstract

The morphology and distribution of nanoscale structures, such as catalytic active nanoparticles and quantum dots on surfaces, have a significant impact on their function. Thus, the capability of monitoring these properties during manufacturing and operation is crucial for the development of devices that rely on such materials. We demonstrate a technique that allows highly surface-sensitive imaging of nanostructures on planar surfaces over large areas. The capabilities of hard x-ray grazing-incidence ptychography combine aspects from imaging, reflectometry, and grazing-incidence small angle scattering in providing images that cover a large field of view along the beam direction while providing high surface sensitivity. For homogeneous samples, it yields a surface profile sensitivity better than 1 nm normal to the surface, with a poorer resolution in the sample surface plane, (i.e., along the beam and transverse to the beam). Like other surface scattering methods, this technique facilitates the characterization of nanostructures across statistically significant surface areas or volumes but with additional spatial information. In this work, we present a reconstructed test object spanning 4.5mm×20µm with 20 nm high topology.

Funder

Villum Fonden

H2020 Marie Skłodowska-Curie Actions

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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