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Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computational, for complete beginners to develop an understanding of how the electronic, optical and transport properties of quantum wells, wires and dots are calculated. Readers are lead through a series of simple theoretical and computational examples giving solid foundations from which they will gain the confidence to initiate theoretical investigations or explanations of their own. A CD-ROM is included giving the computer source codes relating the implementations of these numerical methods to real world research programmes. Aimed at postgraduate students of semiconductor and condensed matter physics, the book will be invaluable to all those researching in academic and industrial laboratories worldwide.
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Paul Harrison is currently working in the Institute of Microwaves and Photonics (IMP), which is a research institute within the school of Electronic and Electrical Engineering t the University of Leeds in the United Kingdom. He can always be found on the web, at the time of writing, at: http://www.ee.leeds.ac.uk/homes/ph/ and always answers e-mail. Currently he can be reached at: P.firstname.lastname@example.org or email@example.com
Paul is working on a wide variety of Projects, most of which centre around exploiting quantum mechanics for the creation of novel opto-electronic devices, largely, but not exclusively, in semiconductor Quantum Wells, Wires and Dots. Up to date information can be found on his web page. He is always looking for exceptionally well qualified and motivated students to study for a PhD degree with him-if interested, please don't hesitate to contact him.
Zoran Ikonic was a Professor at the University of Belgrade and is now also a researcher in the IMP. His research interest and experience include the full width of semiconductor physics and optoelectronic devices, in particular, band structure calculations, strain-layered systems, carrier scattering theory, non-linear optics, as well as conventional and quantum mechanical methods for device optimisation.
Vladimir Jovanovic is just completing his PhD at the IMP on physical models of quantum well infrared photodetectors and quantum cascade lasers in GaN- and GaAs-based materials for near-, mid- and far-infrared (Terahertz) applications.
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