KVL / Klausuren / MAP 1.HS: 15.04  2.HS: 03.06  Zw.Sem.: 22.07  Beginn WS: 13.10

4020240037 Physics of solar cells and their analysis by electron microscopy      VVZ  

VL
Fr 9-11
wöch. NEW 14 1'10 (16) Daniel Abou-Ras
UE
Fr 11-12
wöch. nV or digital (0) Daniel Abou-Ras

Digital- & Präsenz-basierter Kurs

Unterrichtssprache
EN
Lern- und Qualifikationsziele
Physics of solar cells; various characterization and simulation techniques applied on semiconductor materials and devices; focus on various electron microscopy methods.
Voraussetzungen
Basics of semiconductor physics
Gliederung / Themen / Inhalte
Basics of semiconductor physics, generation and recombination of charge carriers, diffusion and drift currents, p-n junctions, tandem devices, current-voltage characteristics, detailed balance / Shockley-Queisser limit, quantum efficiency, electroluminescence, capacitance spectroscopy, basics of device simulations; scanning and transmission electron microscopy methods with specific application on solar cells: imaging, diffraction, energy-dispersive and wavelength-dispersive X-ray spectroscopy, electron energy-loss spectroscopy, electron holography, cathodoluminescence, electron-beam-induced current measurements.
Zugeordnete Module
P25.2.a
Umfang, Studienpunkte; Modulabschlussprüfung / Leistungsnachweis
3 SWS, 6 SP/ECTS (Arbeitsanteil im Modul für diese Lehrveranstaltung, nicht verbindlich)
Oral exam
Sonstiges
Einschreibeschlüssel: PV-HU
Literatur:
P. Würfel & U. Würfel, Physics of solar cells, Springer (3rd edition)
D. Abou-Ras, T. Kirchartz, U. Rau (eds.), Advanced Characterization Techniques for Thin-Film Solar Cells, Wiley (2nd edition)
Ansprechpartner
PD Dr. Daniel Abou-Ras, abourasd@hu-berlin.de
Literatur
P. Würfel, U. Würfel. Physics of solar cells. Springer
D. Abou-Ras, T. Kirchartz, U. Rau . Advanced Characterization Techniques for Thin-Film Solar Cells. Wiley
. .
Siehe auch:
http://www.physik.hu-berlin.de/en/sem/teaching
Moodle link:
http://moodle.hu-berlin.de/course/view.php?id=126575
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