260005 PR Laboratory Solid State Physics: Advanced Materials (2015S)
Advanced lab course in solid state physics
Continuous assessment of course work
Labels
Registration/Deregistration
Note: The time of your registration within the registration period has no effect on the allocation of places (no first come, first served).
- Registration is open from Mo 09.02.2015 08:00 to We 25.02.2015 23:00
- Deregistration possible until Su 22.03.2015 23:00
Details
max. 6 participants
Language: German
Lecturers
- Thomas Pichler
- Paola Ayala
- Oleg Domanov
- Filippo Fedi
- Wolfgang Lang
- Wilhelm Anton Markovitsch
- Herwig Peterlik
- Viktor Schlosser
- Bogdan Sepiol
- Hidetsugu Shiozawa
- Markus Stana
- Georg Zechner
Classes
Vorbesprechung: MI 04.03.2015 13.30-15.00 Ort: Josef-Stefan-Hörsaal, Boltzmanngasse 5, 3. Stk., 1090 Wien
Anmeldung über Univis von Mo 09.02.15 08:00 Uhr bis Mi 25.02.15 23:00 Uhr, abmelden bis So 22.03.15 23:00 Uhr.Information
Aims, contents and method of the course
During this lab course 3 detailed experiments in the field of Solid State Physics will be conducted on advanced materials using modern research equipment. These examples will cover advanced materials with reduced dimensionality, such as fullerenes and nanotubes, biomaterials, high temperature superconductors, nanostructured metal surfaces, and semiconductors for photovoltaics. Basic topical issues of the nanoscopic and mesoscopic physics such as quantum correlation effects on phonons and electrons, quantum transport phenomena, local field effects, charge carrier type, injection and separation as well as structural confinement in metal surfaces and hybrid systems will be investigated. Attending the parallel seminar 'Advanced Materials' is required. As part of this lab the basic knowledge for a bachelor thesis can be acquired and the themes issued. Candidates interested to perform a bachelor thesis are asked to provide a certificate for the needed 90 ECTS points. This certificate ("Sammelzeugnis") can be obtained in the study service center.
Assessment and permitted materials
Immanent
Minimum requirements and assessment criteria
Development to self responsible experimental activities.
Examination topics
Execution, documentation and presentation of experimental work.
Reading list
nanostrukturierte Metalloberflächen:
http://dcs.univie.ac.at/fileadmin/user_upload/ag_dcs/download/Poster_Praktikum_Partyka_SS2012.pdf
http://dcs.univie.ac.at/fileadmin/user_upload/ag_dcs/download/Poster_Praktikum_Partyka_SS2012.pdf
Association in the course directory
PIII 2, MaG 31, LA-Ph213
Last modified: We 02.03.2022 00:24