Faculty of Mathematics and Natural Sciences Department of Physics auf deutsch


in Arbeit, keine gültigen Zeiten/Räme
winter sem. 2024
Last update: 14.05.24 15:11:28



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WS 2024 SS 2025
WS 2024
WS 2023 SS 2024
Department of Physics
open chemistry
KVL / Klausuren / MAP 1st HS: 14.10  2nd HS: 09.12  sem.br.: 17.02  begin SS: 13.04

4020245013 X-Ray Scattering: Basics and Applications in Materials Science      VVZ  

VL
Thu 9-11
weekly nV or digital (0) Martin Schmidbauer
UE
Wed 13-15
14-day nV or digital (0) Martin Schmidbauer

Präsenzkurs

classroom language
EN
aims
The Lecture is intended to give an introduction into practics and theory of x-ray diffraction.

At the end of the semester I offer practical lessons (1-2 days) at the Leibniz-Institute for Crystal Growth where different experimental techniques will be applied.
requirements
Knowledge in atomic and solid state physics
structure / topics / contents
1. Introduction, History, X-ray sources
2. Kinematical X-Ray Scattering Theory
3. Crystal structure determination
4.Phase Analysis, Powder Diffractometry
5.Dynamical Diffraction Theory
6.X-Ray Topography
7. High-Resolution X-Ray Diffraction
8. X-Ray Reflectometry
9. Diffuse Scattering from Interfacial Roughness
10.X-Ray Small Angle Scattering
11.Diffuse Scattering from Phonons and Point Defects
12.Spectroskopical Techniques

assigned modules
P25.2.c P35.4.b P35.4.c
amount, credit points; Exam / major course assessment
3 SWS, 6 SP/ECTS (Arbeitsanteil im Modul für diese Lehrveranstaltung, nicht verbindlich)
yes
other
On demand the lectures will be given in english language. The lectures will take place at Leibniz-Institut für Kristallzüchtung, Max-Born-Str.2, 12489 Berlin, Seminar room 19.30 414
contact
Dr. Martin Schmidbauer; martin.schmidbauer@ikz-berlin.de; 030-6392-3097
literature
Jens Als-Nielsen, Des McMorrow. Elements of Modern X-Ray Physics . Wiley-VCH, 2. Auflage 2011, ISBN 978-0-470-97394-3
U. Pietsch, V. Holy, und T. Baumbach. High-Resolution X-Ray Scattering from Thin Films and Lateral Nanostructures. Springer, 2. Auflage 2004, ISBN 978-0387400921
L. Spieß et al. Moderne Röntgenbeugung. Teubner, 3. Auflage 2019, ISBN 978-3-519-00522-3
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