Fr. 89.00

Scanning Capacitance Microscopy - and Spectroscopy on Semiconductor Materials

German · Paperback / Softback

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Description

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In this PhD-thesis, Scanning Capacitance Microscopy (SCM) and Scanning Capacitance Spectroscopy (SCS) was applied to investigate various silicon samples. SCM is used to investigate the electrical behaviour of samples with a lateral resolution below 100 nm. The work is divided into 3 major experimental parts: (1) the properties of metal organic chemical vapour deposited zirconium dioxide as dielectric material for SCM was explored. Usage of zirconium dioxide leads to reduced leakage currents and improved signal quality. (2) focussed ion beam induced damage in silicon was investigated with SCM. The beam shape and the range of ion damage inside the sample was investigated. The SCM data were compared with transmission electron microscopy data. (3) a setup for quantitative Scanning Capacitance Spectroscopy with an external capacitance bridge connected to an atomic force microscope was designed. This setup is sensitive enough to resolve the energetic distribution of interface trapped charges and to quantitatively measure the local oxide charge density distribution of zirconium dioxide layers.

About the author










Wolfgang Brezna earned his PhD in technical sciences from theVienna University of Technologie in 2005. His research in Nanometrology includesscanning capacitance microscopy, local photocurrent and electroluminescencespectroscopy, the physics of nm sized contacts and atomic force microscopy tip-sample interaction.

Product details

Authors Wolfgang Brezna
Publisher Südwestdeutscher Verlag für Hochschulschriften
 
Languages German
Product format Paperback / Softback
Released 26.01.2009
 
EAN 9783838102672
ISBN 978-3-8381-0267-2
No. of pages 156
Dimensions 150 mm x 220 mm x 8 mm
Weight 224 g
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Electricity, magnetism, optics

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