Study Guide@lith   Link to LiU Homepage
 

Linköping Institute of Technology

Link to LiU Homepage
 
Valid for year : 2007
 
TFYA04 Materials Optics, 6 ECTS credits.
/Materialoptik/

For:   Fys   Y   YMP  


OBS!

Overlapping course contents: TFYA03

 

Prel. scheduled hours: 46
Rec. self-study hours: 114

  Area of Education: Science

Subject area: Physics

  Advancement level (G1, G2, A): A

Aim:
The course objective is to give a physical background to linear optical properties of materials, to describe how they can be measured and analyzed with modern techniques and to give examples of how they can be utilized in devices and for understanding of advanced optical structures. Special emphasis will be on tools (often matrix-based) for analyzing complex structures used in devices as well as in nature. Application examples will be chosen both from solid state physics of device-related materials and from optical structures in nature, eg structural colors in insects, with the ambition to illustrate ongoing research and development in university and industry. More specifically the course treats determination and analysis of optically related materials properties like refractive index, optical band gaps, etc, as well as determination of microstructure like thickness of thin films and analysis of multilayered systems, materials composition, porosity, and more. The ambition is to provide knowledge in optics on a level sufficient to understand results from ongoing research in the corresponding areas and also to prepare for research. Goals: â?¢ To learn about basic theory to provide understanding for the optics and physics behind linear optical properties. â?¢ To learn about models for analysis to provide mathematical tools useful to understand and develop optical systems, methods and components found in various environments in society. â?¢ To provide a connection to reality through examples from research to demonstrate that it can be a small step from university studies to knowledge and methodology used in research and development. â?¢ To apply the knowledge and models in laboratory exercises and simulations to check usefulness and limitations of theories and models. In summary the goal is to describe the path from physics to application and during the trip provide models, tools and methodology useful in practice.

Prerequisites: (valid for students admitted to programmes within which the course is offered)
Basic courses in linear algebra and complex numbers

Note: Admission requirements for non-programme students usually also include admission requirements for the programme and threshhold requirements for progression within the programme, or corresponding.

Organisation:
The course consists of lectures during which the most important theory is discussed. Some of the lectures are devoted to problem solving. External lectures are invited to give the course a wider perspective. The first half of the course is also part of Applied Optics TFYA03. At present either TFYA03 or TFYA04 can be taken, not both.

Course contents:
Among the included subjects for basic understanding of optics are: â?¢ Relations between the microscopic properties (dipoles) and macroscopic properties (dielectric function) of materials â?¢ Anisotropic optical properties like birefringence â?¢ Spectral properties: absorption and dispersion, phonon spectroscopy â?¢ Optical properties of composite materials â?¢ Polarized light and depolarization â?¢ Detailed understanding about surface optics â?¢ Advanced multilayer optics including photonic crystals and structural colors. Among the practical tools to be put in the tool box are: â?¢ Models for parameterization of optical properties â?¢ Effective-media models for composite materials â?¢ Matrix models for polarized light â?¢ Methodology and matrix models for reflection and transmission of light at surfaces with and without layers â?¢ 4x4 matrix models for anisotropic layered materials â?¢ Optical measurement techniques: reflectance, ellipsometry, generalized and Mueller-matrix ellipsometry, surface plasmon resonance and optical waveguides. A detailed course content is found on the course homepage.

Course literature:
Lecture notes (Thin Film Optics and Polarized Light, H Arwin) and reprints

Examination:
A written examination
Laboratory excercises
3,5 p
0,5 p
/
/
5 ECTS
1 ECTS
 
At the exam it is allowed to bring any written material. Other forms of examination, eg home exams, may be offered as an alternative



Course language is English.
Department offering the course: IFM.
Director of Studies: Leif Johansson
Examiner: Hans Arwin
Link to the course homepage at the department


Course Syllabus in Swedish

Linköping Institute of Technology

Link to top of pagep


Contact: TFK , val@tfk.liu.se
Last updated: 08/14/2016