Tags
Language
Tags
May 2024
Su Mo Tu We Th Fr Sa
28 29 30 1 2 3 4
5 6 7 8 9 10 11
12 13 14 15 16 17 18
19 20 21 22 23 24 25
26 27 28 29 30 31 1
https://pbusa.top/

Have you ever wondered what Marilyn Monroe, Pamela Anderson, Dolly Parton, Farrah Fawcett, and Cindy Crawford all have in common? It's not just their legendary status in the entertainment industry - they've all graced the pages of Playboy Magazine at some point in their illustrious careers. Experience the timeless allure of these global icons and many more in the complete Playboy Archive!

Complete Playboy Archive
Now with FREE DOWNLOAD!

Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices

Posted By: AvaxGenius
Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices

Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices by Benjamin Lingnau
English | PDF (True) | 2015 | 203 Pages | ISBN : 3319258036 | 7.9 MB

This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.