Recovery of Background Structures in Nanoscale Helium Ion Microscope Imaging

This paper discusses a two step enhancement technique applicable to noisy Helium Ion Microscope images in which background structures are not easily discernible due to a weak signal. The method is based on a preliminary adaptive histogram equalization, followed by 'slow motion' low-exponen...

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Veröffentlicht in:Journal of research of the National Institute of Standards and Technology 2014, Vol.119 (1), p.683-701
Hauptverfasser: Carasso, Alfred S, Vladár, András E
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper discusses a two step enhancement technique applicable to noisy Helium Ion Microscope images in which background structures are not easily discernible due to a weak signal. The method is based on a preliminary adaptive histogram equalization, followed by 'slow motion' low-exponent Lévy fractional diffusion smoothing. This combined approach is unexpectedly effective, resulting in a companion enhanced image in which background structures are rendered much more visible, and noise is significantly reduced, all with minimal loss of image sharpness. The method also provides useful enhancements of scanning charged-particle microscopy images obtained by composing multiple drift-corrected 'fast scan' frames. The paper includes software routines, written in Interactive Data Language (IDL),(1) that can perform the above image processing tasks.
ISSN:1044-677X
2165-7254
2165-7254
DOI:10.6028/jres.119.030