cris.boxmetadata.label.title
3D nuclear track analysis by digital holographic microscopy
cris.boxmetadata.label.dateissued
01 browse.startsWith.months.january 2011
cris.boxmetadata.label.accesslevel
metadata only access
cris.boxmetadata.label.resourcetype
journal article
cris.boxmetadata.label.authors
Palacios F.
Ricardo J.
Palacios G.F.
Sajo-Bohus L.
Goncalves E.
Valin J.L.
Monroy F.A.
Universidad Simón Bolívar
cris.boxmetadata.label.abstract
A new method, based on Digital Holographic Microscopy (DHM), to visualize and to analyze etched tracks in SSNTD has been developed. The proposed method is based on the possibility of the digital holography to perform whole reconstruction of the recorded wave front, so that phase and intensity distribution at a plane located between the object and recording plane and along the reconstructed image of the object can be determined. In a DHM system, the back focal plane of the lens can be reconstructed so that complex amplitudes of the Fraunhofer diffraction of light distribution across the object can be known. With the knowledge and manipulation of the components of this plane is possible to design different methods of image analysis. In this paper, the DHM method was applied to determine the track parameters in CR-39 detectors, showing that most of studies carried out with Confocal Microscopy and Atomic Force Microscopy could be also done, with the sufficient exactitude and precision, but in a simpler and more economic way. The developed microholographic method provides a new alternative procedure that overcomes the current techniques at least in technological simplicity. © 2010 Elsevier Ltd. All rights reserved.
cris.boxmetadata.label.citationstartpage
98
cris.boxmetadata.label.citationendpage
103
cris.boxmetadata.label.volume
46
cris.boxmetadata.label.issue
1
cris.boxmetadata.label.language
English
cris.boxmetadata.label.ocdeknowledgeArea
Física nuclear
Ingeniería de sistemas y comunicaciones
Ciencias de la computación
cris.boxmetadata.label.subjects
cris.boxmetadata.label.doi
cris.boxmetadata.label.scopusidentifier
2-s2.0-78650828568
cris.boxmetadata.label.source
Radiation Measurements
cris.boxmetadata.label.containerissn
13504487
cris.boxmetadata.label.sponsor
This work was supported by FONACIT (Project S1-2001000954) and by the Brazilian research agencies CAPES and FINEP.
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Scopus