What are RichMedia CDs?
A new way of learning scientific subjects!


RichMedia CDs are an innovative way of attending a virtual presentation. RichMedia CDs include the transparencies of the presentation, the synchronised video of the speaker.
You can go through the whole presentation using the navigation panel and select the part you are interested on.

Select your tutorial in the list below and have a good tutorial:
- Toxicology and Safety in III V epitaxy
- Quantum Dot Laser
- Mirror heating and COD in high-power lasers(Catastrophic Optical Damage )
- Efficiency of diode lasers:Basics and principles of optimisation
- High-Power High-Brightness Tapered Diode Lasers and Amplifiers
- The major changes affecting the physical layer of optical networks
- By emitter degradation analysis of high-power diode laser bars
- Raman Amplifiers
- Breaking the diffraction limit: Analysis of diode lasers by near-field optical microscopy
- An overview of large spot size laser structures
- Frequency Doubling and Second Order Nonlinear Optics
- Recent Solutions for Higher-Brightness Laser Sources
- Modelling of External Cavity Laser Diodes
- Fluorescence diagnostic imaging

By clicking on the picture, you can open the RichMedia CD on line.
You can also download the whole RichMedia CD (iso file to make your own Richmedia CD) or only the transparencies (pdf file).
You can also preview the video.

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Toxicology and Safety in III V epitaxy
Nicole Proust
Thales Research & Technology (France)
Toxicology and Safety in III V epitaxy
Nicole Proust
Thales Research & Technology (France)
(iso)
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280 Mo

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1 Mo
TOP
________________________________________________________________
Quantum Dot Laser
Johann Peter Reithmaier
University of Kassel (Germany)
(iso)
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305 Mo

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7 Mo
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________________________________________________________________
Mirror heating and COD in high-power lasers (Catastrophic Optical Damage )
Jens W. Tomm (*) and Ignacio Esquivias (**)
(*) Max Born Institute (Germany)
(**) Universidad Politécnica de Madrid (Spain)
(iso)
Download
360 Mo

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2.5 Mo
TOP
________________________________________________________________
Efficiency of diode lasers: Basics and principles of optimisation
G. Erbert
Ferdinand- Braun- Institut (Germany)
High-Power High-Brightness Tapered Diode Lasers and Amplifiers
Ralf Ostendorf
Fraunhofer Institut für Angewandte Festkörperphysik (Germany)
(iso)
Download
330 Mo

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2 Mo
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________________________________________________________________
The major changes affecting the physical layer of optical networks
Sébastien Bigo
Alcatel-Lucent, Bell Labs (France)
(iso)
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170 Mo

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1 Mo
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________________________________________________________________
By emitter degradation analysis of high-power diode laser bars
Eric Larkins (*) and Jens W. Tomm (**)
(*) University of Nottingham (United Kingdom)
(**) Max Born Institute (Germany)
(iso)
Download
310 Mo

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Slides PART1
3 Mo
Slides PART2
7 Mo
TOP
________________________________________________________________
Raman Amplifiers
Dominique Bayart
Alcatel-Lucent (France)
(iso)
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460 Mo

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1 Mo
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________________________________________________________________
Breaking the diffraction limit: Analysis of diode lasers by near-field optical microscopy
Jens W. Tomm
Max Born Institute (Germany)
(iso)
Download
485 Mo

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9 Mo
TOP
________________________________________________________________
An overview of large spot size laser structures
Brian Corbett
Tyndall (Ireland)
(iso)
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340 Mo

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1 Mo
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________________________________________________________________
Frequency Doubling and Second Order Nonlinear Optics
Paul Michael Petersen and Ole Bjarlin Jensen
DTU Fotonik, Technical University of Denmark (Denmark)
(iso)
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175 Mo

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Slides PART1
0.7 Mo
Slides PART2
3 Mo
TOP
________________________________________________________________
Recent Solutions for Higher-Brightness Laser Sources
Nicolas Michel
Alcatel Thales III-V Lab (France)
(iso)
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245 Mo

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0.7 Mo
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________________________________________________________________
Modelling of External Cavity Laser Diodes
Slawomir Sujecki
University of Nottingham (United Kingdom)
(iso)
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519 Mo

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7.3 Mo
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________________________________________________________________
Fluorescence diagnostic imaging
Stefan Andersson-Engels
Lund University (Sweden)
(iso)
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193 Mo

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6.2 Mo
TOP
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