Course title
固体材料物性工学   [Science and Engineering of Solid State Materials]
Course category courses for master's programs  Requirement   Credit 2 
Department   Year   Semester 1st 
Course type 1st  Course code 1060401
Instructor(s)
森下 義隆   [MORISHITA Yoshitaka]
Facility affiliation Faculty of Engineering Office afjgxte/L1151  Email address

Course description
Students learn solid state materials as an applications of quantum mechanics and thermal statistical mechanics.

This course mainly gives the material research of semiconductor nanostructures; formation of three-dimensional photonic crystals including III-V compound semiconductors and magnetic nanostructures, and their characterization of crystal properties.
Expected Learning
The student will become proficient with the material research of semiconductor nanostructures; formation of three-dimensional photonic crystals including III-V compound semiconductors and magnetic nanostructures, and their characterization of crystal properties.

Corresponding criteria in the Diploma Policy: See the Curriculum maps.
Course schedule
1. Quantum Well
2. Quantum Wire, Quantum Dot
3. Photonic Crystal
4. Fabrication of Quantum Structure I
5. Fabrication of Quantum Structure II
6. Fabrication of Photonic Crystal I
7. Fabrication of Photonic Crystal II
8. Characterization -X-ray Diffraction I
9. Characterization -X-ray Diffraction II
10. Characterization -Electron Diffraction
11. Characterization ?Optical Microscope
12. Characterization ?Electron Microscope
13. Characterization ?Electrical Propertiy
14. Characterization ?Optical Propertiy
15. Summary
Prerequisites
The completion is recommended for students in the Department of Applied Physics.
In addition to 30 hours that students spend in the class, students are recommended to prepare for and review the lectures, spending the standard amounts of time as specified by the University.
Required Text(s) and Materials
If needed, Prints are distributed in the lecture.
References
If needed, Prints are distributed in the lecture.
Assessment/Grading
The final average will be computed as follows:20%will be from lecture tests, and 80% from the final exam.
Message from instructor(s)
I would like you to understand how to fabricate the device structure and its characterization technique.
Course keywords
Quantum structure, photonic crystal, structure evaluation, electrical characteristics, optical properties
Office hours
From 12:00 to 13:00 on Friday
Remarks 1
Remarks 2
Related URL
Lecture Language
Japanese
Language Subject
Last update
3/15/2019 5:04:49 PM