387.078 Nano-Photonics
This course is in all assigned curricula part of the STEOP.
This course is in at least 1 assigned curriculum part of the STEOP.

2019W, VO, 2.0h, 3.0EC

Properties

  • Semester hours: 2.0
  • Credits: 3.0
  • Type: VO Lecture

Learning outcomes

After successful completion of the course, students are able to explain the theoretical concepts of nano photonic devices. This includes the desciption and calculation of  metamaterials and photonic crystals as well as of plasmonics devices and quantum ligth emitters

Subject of course

Modern concepts of photonic devices are presented and discussed in detail. Those include, for instance, metamaterials, photonics crystals, plasmonic devices, and quantum light sources.

Teaching methods

course presentation by lecturer(s)

Mode of examination

Written

Lecturers

Institute

Course dates

DayTimeDateLocationDescription
Wed16:00 - 18:0009.10.2019 - 29.01.2020Seminarraum 387 Lecture
Nano-Photonics - Single appointments
DayDateTimeLocationDescription
Wed09.10.201916:00 - 18:00Seminarraum 387 Lecture
Wed16.10.201916:00 - 18:00Seminarraum 387 Lecture
Wed23.10.201916:00 - 18:00Seminarraum 387 Lecture
Wed30.10.201916:00 - 18:00Seminarraum 387 Lecture
Wed06.11.201916:00 - 18:00Seminarraum 387 Lecture
Wed13.11.201916:00 - 18:00Seminarraum 387 Lecture
Wed20.11.201916:00 - 18:00Seminarraum 387 Lecture
Wed27.11.201916:00 - 18:00Seminarraum 387 Lecture
Wed04.12.201916:00 - 18:00Seminarraum 387 Lecture
Wed11.12.201916:00 - 18:00Seminarraum 387 Lecture
Wed18.12.201916:00 - 18:00Seminarraum 387 Lecture
Wed08.01.202016:00 - 18:00Seminarraum 387 Lecture
Wed15.01.202016:00 - 18:00Seminarraum 387 Lecture
Wed22.01.202016:00 - 18:00Seminarraum 387 Lecture
Wed29.01.202016:00 - 18:00Seminarraum 387 Lecture

Examination modalities

written exam

Course registration

Begin End Deregistration end
07.10.2019 00:00 31.10.2019 23:59

Curricula

Study CodeObligationSemesterPrecon.Info
066 508 Microelectronics and Photonics Not specified

Literature

A Scriptum will be handed out during the lecture.

Previous knowledge

Basic knowledge of general physics, mathematics and optics is required.

Language

English