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5PMNOSC1 : Semiconductor devices for optoelectronics - WPMNDOS9

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  • Number of hours

    • Lectures : 10.0
    • Tutorials : 10.0
    • Laboratory works : ?
    • Projects : ?
    • Internship : ?
    ECTS : 2.0

Goals

The goal of the course is to provide the tools for the understanding and design of elementary optoelectronic devices (Photodetectors, Laser Diodes, LEDs). The physics of the interaction of photons with semiconductors is first described before being used to derive the behavior of optoelectronic devices.

Contact Jean-Emmanuel BROQUIN

Content

  • Interaction between photons and a semiconductor: band to band transitions leading to absorption, spontaneous and stimulated emission of electromagnetic waves.
  • LED (spectrum, efficiency, modulation, technology)
  • Laser Diode (threshold conditions, modulation, emitted power and spectrum, technology)
  • Photodetectors : photoconductors and photodiodes (NEP, Responsivity, response time, quantum efficiency)


Prerequisites

Microelectronic device physice, notions of geometric and wave Optics, fundamentals of solid states and quantum physics.

Tests

the assessment is carried-out through an open-book exam.



100% Exam

Additional Information

Curriculum->Master->Semester 9
Curriculum->Master PhSem->Semester 9
Curriculum->IPhy->Semester 9
Curriculum->Double-Diploma Engineer/Master->Semester 9

Bibliography

Optoélectronique, E. Rosencher & B. Vinter, DUNOD
Fundamentals of Photonics, Saleih & Teich, Wiley and sons
A. YARIV : Optical electronics (4th ed Saunders)
D. WOOD : Optoelectronic semiconductor devices (Prentice Hall)

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Date of update March 18, 2019

Grenoble INP Institut d'ingénierie Univ. Grenoble Alpes