Coherent Diffractive Imaging is a lensless technique that allows imaging of matter at a spatial resolution not limited by lens aberrations. This technique exploits the measured diffraction pattern of a coherent beam scattered by periodic and non-periodic objects to retrieve spatial information. The diffracted intensity, for weak-scattering objects, is proportional to the modulus of the Fourier Transform of the object scattering function. Any phase information, needed to retrieve its scattering function, has to be retrieved by means of suitable algorithms. Here we present a new approach, based on a memetic algorithm, i.e. a hybrid genetic algorithm, to face the phase problem, which exploits the synergy of deterministic and stochastic optimization methods. The new approach has been tested on simulated data and applied to the phasing of transmission electron microscopy coherent electron diffraction data of a SrTiO 3 sample. We have been able to quantitatively retrieve the projected atomic potential, and also image the oxygen columns, which are not directly visible in the relevant high-resolution transmission electron microscopy images. Our approach proves to be a new powerful tool for the study of matter at atomic resolution and opens new perspectives in those applications in which effective phase retrieval is necessary.

Facing the phase problem in Coherent Diffractive Imaging via Memetic Algorithms / A. Colombo, D.E. Galli, L. De Caro, F. Scattarella, E. Carlino. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - 7(2017), p. 42236.42236. [10.1038/srep42236]

Facing the phase problem in Coherent Diffractive Imaging via Memetic Algorithms

A. Colombo
Primo
;
D.E. Galli
;
2017

Abstract

Coherent Diffractive Imaging is a lensless technique that allows imaging of matter at a spatial resolution not limited by lens aberrations. This technique exploits the measured diffraction pattern of a coherent beam scattered by periodic and non-periodic objects to retrieve spatial information. The diffracted intensity, for weak-scattering objects, is proportional to the modulus of the Fourier Transform of the object scattering function. Any phase information, needed to retrieve its scattering function, has to be retrieved by means of suitable algorithms. Here we present a new approach, based on a memetic algorithm, i.e. a hybrid genetic algorithm, to face the phase problem, which exploits the synergy of deterministic and stochastic optimization methods. The new approach has been tested on simulated data and applied to the phasing of transmission electron microscopy coherent electron diffraction data of a SrTiO 3 sample. We have been able to quantitatively retrieve the projected atomic potential, and also image the oxygen columns, which are not directly visible in the relevant high-resolution transmission electron microscopy images. Our approach proves to be a new powerful tool for the study of matter at atomic resolution and opens new perspectives in those applications in which effective phase retrieval is necessary.
No
English
Multidisciplinary
Settore FIS/03 - Fisica della Materia
Articolo
Esperti anonimi
Pubblicazione scientifica
2017
Nature Publishing Group
7
42236
42236
Pubblicato
Periodico con rilevanza internazionale
scopus
crossref
pubmed
Aderisco
info:eu-repo/semantics/article
Facing the phase problem in Coherent Diffractive Imaging via Memetic Algorithms / A. Colombo, D.E. Galli, L. De Caro, F. Scattarella, E. Carlino. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - 7(2017), p. 42236.42236. [10.1038/srep42236]
open
Prodotti della ricerca::01 - Articolo su periodico
5
262
Article (author)
no
A. Colombo, D.E. Galli, L. De Caro, F. Scattarella, E. Carlino
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/480908
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