3D atomic imaging by internal-detector electron holography

A method of internal-detector electron holography is the time-reversed version of photoelectron holography. Using an energy-dispersive x-ray detector, an electron gun, and a computer-controllable sample stage, we measured a multiple-energy hologram of the atomic arrangement around the Ti atom in SrT...

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Veröffentlicht in:Physical review letters 2011-07, Vol.107 (4), p.045502-045502, Article 045502
Hauptverfasser: Uesaka, Akio, Hayashi, Kouichi, Matsushita, Tomohiro, Arai, Shigetoshi
Format: Artikel
Sprache:eng
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Zusammenfassung:A method of internal-detector electron holography is the time-reversed version of photoelectron holography. Using an energy-dispersive x-ray detector, an electron gun, and a computer-controllable sample stage, we measured a multiple-energy hologram of the atomic arrangement around the Ti atom in SrTiO3 by recording the characteristic Ti Kα x-ray spectra for different electron beam angles and wavelengths. A real-space image was obtained by using a fitting-based reconstruction algorithm. 3D atomic images of the elements Sr, Ti, and O in SrTiO3 were clearly visualized. The present work reveals that internal-detector electron holography has great potential for reproducing 3D atomic arrangements, even for light elements.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.107.045502