Spatially and momentum resolved energy electron loss spectra from an ultra-thin PrNiO{sub 3} layer

We present an experimental approach which allows for the acquisition of spectra from ultra-thin films at high spatial, momentum, and energy resolutions. Spatially and momentum (q) resolved electron energy loss spectra have been obtained from a 12 nm ultra-thin PrNiO{sub 3} layer using a nano-beam el...

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Veröffentlicht in:Applied physics letters 2015-05, Vol.106 (20)
Hauptverfasser: Kinyanjui, M. K., Kaiser, U., Benner, G., Pavia, G., Boucher, F., Habermeier, H.-U., Keimer, B.
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Sprache:eng
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Zusammenfassung:We present an experimental approach which allows for the acquisition of spectra from ultra-thin films at high spatial, momentum, and energy resolutions. Spatially and momentum (q) resolved electron energy loss spectra have been obtained from a 12 nm ultra-thin PrNiO{sub 3} layer using a nano-beam electron diffraction based approach which enabled the acquisition of momentum resolved spectra from individual, differently oriented nano-domains and at different positions of the PrNiO{sub 3} thin layer. The spatial and wavelength dependence of the spectral excitations are obtained and characterized after the analysis of the experimental spectra using calculated dielectric and energy loss functions. The presented approach makes a contribution towards obtaining momentum-resolved spectra from nanostructures, thin film, heterostructures, surfaces, and interfaces.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.4921405