Zugriffsnummer 28448
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel ALD growth behavior of high-k nanolayers on various substrates characterized by x-ray spectrometry in gracing incidence geometry
Autor(in); Institution
Müller, Matthias; 7.2, Kryophysik und Spektrometrie, PTB-Berlin
Sioncke, Sonja; Imec, Leuven, BELGIUM
Delabie, Annelies; Imec, Leuven, BELGIUM
Beckhoff, Burkhard; 7.2, Kryophysik und Spektrometrie, PTB-Berlin
Quelle/Jahr Solid State Phenomena: 195 (2012), 95 - 97
ISSN 1012-0394 (PRINT) ; 1662-9779 (ONLINE)
DOI
Verlag Zürich: Trans Tech Publications
Freie Schlagworte high-k ; Atomic Layer Deposition ; nanolayer ; X-Ray Spectrometry ; interface speciation ; reference-free ; contamination analysis
Zusammenfassung Thin films of high-k material are becoming more and more used for semiconductor devices. A further shrinking of the devices requires also a further reduction of the high-k film thickness. With this reduction of the high-k thickness down to just a few nanometers two technical challenges have to be addressed. The first one is the ALD process for the deposition of the high-k material. Usually the ALD process can be well controlled by tuning the number of process cycles. But it is theoretically predicted that the growth-per-cycle of the first cycles can be different than the steady growth-per-cycle which is obtained for high cycle numbers. This effect is caused by a not fully covered initial surface during the first cycles. Only when the deposited material forms a closed surface and the surface probabilities are the same for each following cycle the deposition rate will be constant. The second challenge is that the electrical properties of thin films with a thickness of a few nanometers are significantly determined by the quality of the interface between the film and the substrate. Both, the growth-per-cycle of the first ALD cycles and the surface quality can be investigated by using X-Ray Spectrometry (XRS) in the gracing incidence geometry. Hence, the following study has been performed to quantify the high-k mass deposition after different number of ALD cycles on various semiconductor materials by means of reference-free Grazing Incidence X-Ray Fluorescence (GI-XRF) analysis. The chemical state of the elements at the interface is also investigated by means of Near Edge X-ray Absorption Fine Structure (NEXAFS) spectroscopy.

Zitierung

Müller, M., Sioncke, S., Delabie, A., & Beckhoff, B. (2012). ALD growth behavior of high-k nanolayers on various substrates characterized by x-ray spectrometry in gracing incidence geometry. Solid State Phenomena, 195, 95–97. https://doi.org/10.4028/www.scientific.net/ssp.195.95

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