Course title
7D280000
Lecture and Discussion in Functional Device Materials

nagayama katsuhisa
Course content
The various kinds of high-performance device materials, such as electronic and magnetic device materials, have been developed dramatically as the field of innovative frontier materials science. The development of next generation solar battery film device and artificial lattice film device which have the superlattice structure are indispensable in future ICT society. Furthermore, this lecture teaches the high-performance permanent magnet film materials, magnetic semiconductor used for Magnetoresistive Random Access Memory (MRAM) and spin transistor which principles are giant magnetoresistance effect by the spintronics, and Meissner effect of the oxide high-temperature superconductor with advanced English academic articles.
Purpose of class
This lecture is intended to understand magnetic physics, quantum mechanics and effect, and electron theory for various kinds of high-performance device materials such as the spintronics device or nano device from basic elements to manufacturing methods and applications.
Goals and objectives
  1. Understand and learn the definition, current status, and applications of functional device materials.
  2. Understand and learn the fundamentals, manufacturing methods, applications, and development of electronic devices.
  3. Understand and learn the fundamentals, manufacturing methods, applications, and development of magnetic devices.
  4. Understand and learn the fundamentals, manufacturing methods, applications, and development of nano devices.
  5. Understand and learn the fundamentals, significance, applications, and development of spintronics.
Language
Japanese
Class schedule

Class schedule HW assignments (Including preparation and review of the class.) Amount of Time Required
1. Current status of functional device materials and significance of material development Before lectures, you need to review the solid state physics, quantum theory and effect, and electronic theory. 190minutes
2. Relationship between properties of functional device materials and nanotechnology English academic articles to be used in the 2nd round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
3. Kinds and applications of functional device materials by quantum effect English academic articles to be used in the 3rd round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
4. Relationship between artificial lattice and superlattice structure, and properties of functional device materials English academic articles to be used in the 4th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
5. Fundamentals and manufacturing methods of electronic device materials English academic articles to be used in the 5th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
6. Applications and future development of electronic device materials English academic articles to be used in the 6th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
7. Fundamentals and manufacturing methods of magnetic device materials English academic articles to be used in the 7th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
8. Applications and future development of magnetic device materials English academic articles to be used in the 8th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
9. Current status and future development of nano device materials English academic articles to be used in the 9th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
10. Current status of spintronics device materials English academic articles to be used in the 10th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
11. Future development of spintronics device materials English academic articles to be used in the 11th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
12. Properties of high-temperature superconductor English academic articles to be used in the 12th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
13. Fundamentals, Current status, and future development of magnetic semiconductor English academic articles to be used in the 13th round of lectures which you need to translation to Japanese, and please prepare the presentation. 190minutes
14. Announcement and overview of the study contents in the doctoral course Please prepare the presentation of the study contents in the doctoral course, and overview research contents and future development related to functional device materials. 190minutes
Total. - - 2660minutes
Relationship between 'Goals and Objectives' and 'Course Outcomes'

Assignment Presentation Total.
1. 10% 10% 20%
2. 10% 10% 20%
3. 10% 10% 20%
4. 10% 10% 20%
5. 10% 10% 20%
Total. 50% 50% -
Evaluation method and criteria
Assignment: 50%, Presentation: 50%
Textbooks and reference materials
Before every time lectures, you need to translation English academic articles to Japanese.
Prerequisites
Plese finished the cource of "Ceramics A and B", “Physicality Theory in Solid State”, and “Quantum Physics of Materials” in the college program, and of “Quantum Physics of Materials” in the master’s course.
Office hours and How to contact professors for questions
  • On Monday, Thursday, and Friday, Toyosu campus 2 period after the lecture end, please come to the laboratory (10F-M-25).
Relation to the environment
Non-environment-related course
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates an ability for utilizing knowledge
  • Course that cultivates a basic problem-solving skills
  • Course that cultivates a basic self-management skills
Active-learning course
About half of the classes are interactive
Last modified : Wed Oct 17 08:36:21 JST 2018