This website is no longer updated.

As of 1.10.2022, the Faculty of Physics has been merged into the TUM School of Natural Sciences with the website https://www.nat.tum.de/. For more information read Conversion of Websites.

de | en

Experimental Semiconductor Physics

Prof. Martin Stutzmann

Research Field

Our work at the Walter Schottky Institut deals with various aspects of new and non conventional semiconductor materials and material combinations: semiconductors with a wide bandgap (GaN, InGaN, AlGaN, diamond, SiC) disordered semiconductors (amorphous, nanocrystalline, and polycrystalline) advanced thin film systems (silicon-based luminescent layers, thin film solar cells, organic/anorganic heterosystems, biofunctionalized semiconductors). Most of these material systems are prepared in our group by suitable deposition techniques (MBE, MOCVD, Plasma-enhanced CVD, e-beam evaporation, sputtering). Their efficient optimization is based on the large pool of structural, optical, and electrical characterization techniques available in our Institute. Complementary to the usual spectroscopic techniques we have developed and employ a variety of highly sensitive methods which enable us to study in particular the influence of defects on the electronic performance of materials and devices. Such techniques include subgap absorption spectroscopy, optically induced capacitance spectroscopy and, in particular, modern spin resonance techniques which are applied to various materials systems and devices for spintronics.

In addition to the preparation and characterization of new semiconductor materials we also work on the modification and processing of semiconductors with pulsed high power laser systems (laser-crystallization, holographic nano structuring, laser-induced etching) and investigate the potential of new material systems for novel device structures. Recent examples include nano structured thin film solar cells, high electron mobility transistors based on AlGaN/GaN hetero structures, as well as UV-detectors, sensors and biosensors.

Learn more about the different research areas on the research pages of the Stutzmann, Brandt, and Garrido groups.

Address/Contact

Am Coulombwall 4
85748 Garching b. München
+49 89 289 12761
Fax: +49 89 289 12737

Members of the Research Group

Professor

Office

Scientists

Students

Other Staff

Teaching

Course with Participations of Group Members

Titel und Modulzuordnung
ArtSWSDozent(en)Termine
Advances in Bottom-Up Approaches in Nanotechnology
Zuordnung zu Modulen:
VO 2 Cattani-Scholz, A. Marques Pereira, R. Mo, 09:00–11:00, WSI S101
Do, 09:00–11:15, WSI S101
Renewable Energy
LV-Unterlagen
Zuordnung zu Modulen:
VO 4 Stutzmann, M. Mo, 14:00–16:00, PH HS2
Di, 16:00–18:00, PH HS2
sowie einzelne oder verschobene Termine
Semiconductor Electronic and Photonic Devices
LV-Unterlagen
Zuordnung zu Modulen:
VU 4 Brandt, M. Fr, 08:30–10:00, PH HS2
Aktuelle Fragen der Magneto- und Spintronik
Zuordnung zu Modulen:
PS 2 Brandt, M. Gönnenwein, S. Hübl, H. Mi, 11:30–13:00
Aktuelle Probleme der Halbleiterphysik
Zuordnung zu Modulen:
PS 2 Stutzmann, M. Fr, 10:30–12:30, WSI S101
Seminar on Biosensors and Bioelectronics
Zuordnung zu Modulen:
PS 2 Cattani-Scholz, A.
Leitung/Koordination: Stutzmann, M.
Do, 14:00–16:00, WSI S101
Seminar to Renewable Energies
Zuordnung zu Modulen:
PS 2 Stutzmann, M. Fr, 13:15–15:00, WSI S101
Mentorenprogramm im Bachelorstudiengang Physik (Professor[inn]en A-K)
Zuordnung zu Modulen:
TT 0.2 Auwärter, W. Bandarenka, A. Barth, J. Bausch, A. Böni, P. … (insgesamt 21)
Leitung/Koordination: Höffer von Loewenfeld, P.
FOPRA-Versuch 06: Mikrowellen- und Detektionstechnik der Elektronenspinresonanz
aktuelle Informationen
Zuordnung zu Modulen:
PR 1 Stutzmann, M.
FOPRA-Versuch 08: Hochauflösende Röntgenbeugung
aktuelle Informationen
Zuordnung zu Modulen:
PR 1 Stutzmann, M.
Mitwirkende: Hetzl, M.
FOPRA-Versuch 50: Photovoltaik
aktuelle Informationen
Zuordnung zu Modulen:
PR 1 Stutzmann, M.
Mitwirkende: Marques Pereira, R.
FOPRA-Versuch 84: Herstellung und Eigenschaften selbstorganisierter Monolagen
aktuelle Informationen
Zuordnung zu Modulen:
PR 1 Stutzmann, M.
Mitwirkende: Cattani-Scholz, A.
Literatur-Seminar zu Festkörperphysik
Zuordnung zu Modulen:
SE 2 Stutzmann, M.
Mentoren informieren zur Schwerpunktwahl im Bachelorstudiengang Physik (Physik der kondensierten Materie [KM] / Applied an Engineering Physics [AEP])
aktuelle Informationen
Zuordnung zu Modulen:
KO 0.1 Brandt, M. einzelne oder verschobene Termine
Schottky-Seminar
Diese Lehrveranstaltung ist keinem Modul zugeordnet.
SE 2 Finley, J. Holleitner, A. Stutzmann, M. Di, 17:15–18:30, WSI S101
Vorbesprechung zum Fortgeschrittenen-Praktikum (F-Praktikum)
eLearning-Kurs LV-Unterlagen aktuelle Informationen
Zuordnung zu Modulen:
PR 0.1 Schönert, S. Stutzmann, M. einzelne oder verschobene Termine

Current and Finished Theses in the Group

Donor-Bound Excitons under Stress
Abschlussarbeit im Masterstudiengang Physik (Physik der kondensierten Materie)
Themensteller(in): Martin Brandt
Influence of the contact geometry on the electrically detected magnetic resonance of NV-centers in diamond
Abschlussarbeit im Masterstudiengang Physik (Physik der kondensierten Materie)
Themensteller(in): Martin Brandt
Top of page