362.069 Semiconductor Physics
This course is in all assigned curricula part of the STEOP.
This course is in at least 1 assigned curriculum part of the STEOP.

2023W, VU, 3.0h, 4.0EC
TUWELLectureTube

Properties

  • Semester hours: 3.0
  • Credits: 4.0
  • Type: VU Lecture and Exercise
  • LectureTube course
  • Format: Hybrid

Learning outcomes

After successful completion of the course, students are able to students are able to describe simple quantum mechanical systems such as one-dimensional potential pots or tunnel structures and to calculate the associated wave functions and energies. Furthermore, after positive completion, students are able to describe simple components such as diodes, tunnel diodes and light emitting diodes.

 

Subject of course

Fundamentals of atomic physics. Oscillations and waves: The Schrödinger equation. Origin of the energy bands. The wave nature of electrons. Diamond and zinc blende structure. The band structure of special semiconductors. Statistics of electrons and holes. Mobility and field current. Electron-photon interaction. Optical transitions in semiconductors. Mode of action of the pn-transition. Manufacture and types of pn diodes, bipolar transistors, field effect transistors.

 

Teaching methods

lecture, calculation of exercise examples

please register in the TUWEL course

Mode of examination

Written and oral

Additional information

Language: lecture in german

Exercises in either German or English; practice tests in German or English. Examination in German or English.

Lecturers

Institute

Course dates

DayTimeDateLocationDescription
Tue10:00 - 12:0003.10.2023 - 23.01.2024EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Semiconductor Physics - Single appointments
DayDateTimeLocationDescription
Tue03.10.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue10.10.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue17.10.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue24.10.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue31.10.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue07.11.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue14.11.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue21.11.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue28.11.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue05.12.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue12.12.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue19.12.202310:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue09.01.202410:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue16.01.202410:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung
Tue23.01.202410:00 - 12:00EI 9 Hlawka HS - ETIT Halbleiterphysik Vorlesung

Examination modalities

The two exercise exams have to be positive to be allowed to the final exam.

The LVA examination can be taken either in writing at the end of the semester or orally. Oral dates are available for the registered dates on request by email, also in the summer months.

Examinations can be taken in German or English.

 

Course registration

Begin End Deregistration end
02.10.2023 08:00

Curricula

Study CodeObligationSemesterPrecon.Info
066 938 Computer Engineering Mandatory elective

Literature

 

hand outs in TUWEL course 

A list of in-depth literature is provided in the script and handouts.

Previous knowledge

Knowledge of calculation rules for complex numbers, elementary functions (e.g. exponential and sine functions), differentiation, integration, polynomials (especially partial fractional decomposition and polynomial division). Basic knowledge of physics in mechanics, electrostatics, optics, knowledge of the atomic model.

Language

German