34094 Ph.d.-kursus - Studiegruppe om Kvanteinformation

2021/2022

Kursusinformation
PhD Course - Quantum Information Journal Club
Engelsk
5
Ph.d., Faglig identitetskursus
Kurset udbydes som enkeltfag
F4B (fre 8-12)
Campus Lyngby
13-uger
F4B
Mundtlig eksamen
Evaluation of oral presentations of journal articles by the students. The study group will run continuously on a bi- or tri-weekly basis. To pass the course the student must participate in 15 sessions corresponding to three weeks of fulltime work.
bestået/ikke bestået , intern bedømmelse
Niels Gregersen , Lyngby Campus, Bygning 345A, Tlf. (+45) 4525 3789 , ngre@dtu.dk
34 Institut for Fotonik
I studieplanlæggeren
Overordnede kursusmål
To provide the participants with a fundamental knowledge of basic principles in quantum information technology and to relate this to new approaches in the field. The main focus in this journal club is on implementation in semiconductor structures.
Læringsmål
En studerende, der fuldt ud har opfyldt kursets mål, vil kunne:
  • Conduct a systematic and scientific information search
  • Find relevant scientific literature within the field of quantum information
  • Establish an overview of theories and models in the literature
  • Explain results and conclusions from articles
  • Present the material in a clear and structured way
  • Give a critical evaluation of the presented theory/research
  • Argue scientifically in a discussion
  • Relate the discussed topics to own research
Kursusindhold
The scientific papers discussed in this course range from fundamental, highly-cited papers in the field of quantum information technology to recent papers dealing with advanced structures with implementations of quantum information technology. At each meeting, the students take turns at presenting the material. Which papers to be studied is continually discussed, such that also up-to-date scientific papers may be included.
In contrast to the course provided at DTU Fysik “Journal club in quantum optics” (7.5 ECTS), this journal club has a theoretical approach to quantum informatics and considers implementations in semiconductor materials.
Sidst opdateret
10. maj, 2021