Electronic structure and Lattice dynamics of nanomaterials

Course Information
TitleΗλεκτρονική δομή και δυναμική πλέγματος νανοϋλικών / Electronic structure and Lattice dynamics of nanomaterials
CodeΠΥΕ203
FacultySciences
SchoolPhysics
Cycle / Level2nd / Postgraduate
Teaching PeriodWinter/Spring
CommonNo
StatusActive
Course ID600023521

Programme of Study: PMS PROĪGMENA LEITOURGIKA YLIKA

Registered students: 0
OrientationAttendance TypeSemesterYearECTS
KORMOSElective Courses214

Class Information
Academic Year2025 – 2026
Class PeriodSpring
Faculty Instructors
Weekly Hours2
Total Hours26
Class ID
600285446
Course Type 2021
Specialization / Direction
Mode of Delivery
  • Face to face
Language of Instruction
  • Greek (Instruction, Examination)
Prerequisites
General Prerequisites
General background in Materials Science and Technology with respect to material types, properties and tecnhiques
Learning Outcomes
Upon successful completion, students - have a comprehensive knowledge of concepts, formalism and modelling of vibrational and electronic properties of typical nanomaterials. - will be able to link nanoscale properties with modern problems of modern condensed matter physics.
General Competences
  • Apply knowledge in practice
  • Retrieve, analyse and synthesise data and information, with the use of necessary technologies
  • Make decisions
  • Work autonomously
  • Generate new research ideas
Course Content (Syllabus)
The electronic and vibrational properties of materials are fundamental to modern condensed matter physics, providing the starting point for understanding, predicting and designing the properties of nanomaterials and devices, contributing to a variety of applications such as spintronics and thermoelectricity at the nanoscale. The aim of the course is to deepen the concepts, formalism and modeling of vibrational and electronic properties of nanomaterial standards, as well as their connection with modern problems of materials physics.
Keywords
electronic properties of materials, vibrational properties of materials, modern condensed matter physics
Educational Material Types
  • Notes
  • Slide presentations
  • Multimedia
  • Book
Use of Information and Communication Technologies
Use of ICT
  • Use of ICT in Course Teaching
  • Use of ICT in Communication with Students
  • Use of ICT in Student Assessment
Description
-Powepoint presentations, simulations and videos showing electronic, vibrational properties of materials, corresponding phenomena and technological applicability of modern Solid State Physics. -Electronic communication (email, elearning)-Quizzes, Exercises via elearning
Course Organization
ActivitiesWorkloadECTSIndividualTeamworkErasmus
Lectures261.0
Reading Assigment361.4
Project361.4
Exams20.1
Total1004
Student Assessment
Description
Written exam requiring critical thinking on properties, phenomena and technological applications studied ny Modern Solid State Physics.
Student Assessment methods
  • Written Exam with Short Answer Questions (Summative)
  • Written Exam with Extended Answer Questions (Summative)
  • Written Assignment (Summative)
Bibliography
Course Bibliography (Eudoxus)
1. Φυσική στερεάς κατάστασης: Εισαγωγή στις Αρχές της Επιστήμης των Υλικών, H. Ibach, H. Luth, 2011, Εκδόσεις Ζήτη, Εύδοξος:12583778, ISBN:9789604563135
Additional bibliography for study
1. Electronic Properties of Materials, R. E. Hummel, 2011, Springer New York, ISBN:9781441981646
Last Update
17-01-2024