- معلم: Sophie BRASSELET
- معلم: Thomas pierre ma CHAIGNE
- معلم: Julien FADE
- معلم: Amelie LITMAN
This course is a lecture about light and lasers, providing comprehensive description of the physics underlying the operation of lasers.
After introducing the main physical processes responsible for light emission, this lecture develops a comprehensive treatment for the fundamental concepts of lasers physics and the basic operation principles. Spatial, temporal and coherence properties of laser light are also explored. Detailed example and tutorials are included.
1. Light emission
Historical context, thermal and blackbody emission, electromagnetism and quantum description
2. Photon-atom interaction.
Spontaneous and stimulated transitions, Einstein coefficients, levels populations, rate equations.
3. Light amplification
Conditions for amplification, pumping and population inversion, 2-level, 3-level and 4-level systems, gain and saturation.
4. The laser oscillator
Conditions for laser starting, resonant oscillation, steady-state regime, output intensity.
5. Laser cavities and laser beams
Longitudinal modes, cavity stability, transverses modes and Gaussian beams.
6. Pulsed regimes
Spiking, Q-switch, Modelock
7. Coherence properties of laser light
After introducing the main physical processes responsible for light emission, this lecture develops a comprehensive treatment for the fundamental concepts of lasers physics and the basic operation principles. Spatial, temporal and coherence properties of laser light are also explored. Detailed example and tutorials are included.
1. Light emission
Historical context, thermal and blackbody emission, electromagnetism and quantum description
2. Photon-atom interaction.
Spontaneous and stimulated transitions, Einstein coefficients, levels populations, rate equations.
3. Light amplification
Conditions for amplification, pumping and population inversion, 2-level, 3-level and 4-level systems, gain and saturation.
4. The laser oscillator
Conditions for laser starting, resonant oscillation, steady-state regime, output intensity.
5. Laser cavities and laser beams
Longitudinal modes, cavity stability, transverses modes and Gaussian beams.
6. Pulsed regimes
Spiking, Q-switch, Modelock
7. Coherence properties of laser light
- معلم: Nicolas SANNER
- معلم: Andre NICOLET
- معلم: Gabriel SORIANO
- معلم: Frederic ZOLLA
- معلم: Edyta DUMAS
- معلم: Nadege GUILLEM
- معلم: Amelie LITMAN
- معلم: Jean yves NATOLI
- معلم: Carlotta ROVESTI
- معلم: Frank WAGNER
- معلم: Pauline BENNET
- معلم: Amelie LITMAN
- معلم: Gabriel SORIANO
Acquired competences
Students will develop proficiency in various mathematical techniques essential for optics and photonics applications, such as:
- Analyzing intensity patterns resulting from interference phenomena.
- Conducting basic electromagnetic analyses.
- Computing states of polarization arising from polarizing elements.
- Understanding mathematical underpinnings of Maxwell's equations.
- Grasping the significance of Fourier analysis, particularly its impact on domain transformations.
- Solving fundamental problems related to geometric optics.
Students will develop proficiency in various mathematical techniques essential for optics and photonics applications, such as:
- Analyzing intensity patterns resulting from interference phenomena.
- Conducting basic electromagnetic analyses.
- Computing states of polarization arising from polarizing elements.
- Understanding mathematical underpinnings of Maxwell's equations.
- Grasping the significance of Fourier analysis, particularly its impact on domain transformations.
- Solving fundamental problems related to geometric optics.
- معلم: Patrick FERRAND
- معلم: Miguel angel ALONSO GONZALEZ
- معلم: Philippe AMRAM
- معلم: Kamal BELKEBIR
- معلم: Pauline BENNET
- معلم: Nicolas BONOD
- معلم: Thomas pierre ma CHAIGNE
- معلم: Elodie CHOQUET
- معلم: Guillaume DEMESY
- معلم: Voicu octavian DOLOCAN
- معلم: Romain DUBESSY
- معلم: Julien DUBOISSET
- معلم: Thomas DURT
- معلم: Alexandre ESCARGUEL
- معلم: Ludovic ESCOUBAS
- معلم: Julien FADE
- معلم: Patrick FERRAND
- معلم: Amelie FERRE
- معلم: Laurent GALLAIS-DURING
- معلم: Nadege GUILLEM
- معلم: Marie HOUSSIN
- معلم: Konstantinos ILIOPOULOS
- معلم: Michael KUZMIN
- معلم: Loic LE GOFF
- معلم: Fabien LEMARCHAND
- معلم: Frederic LEMARQUIS
- معلم: Amelie LITMAN
- معلم: Julien LUMEAU
- معلم: Guillaume MAIRE
- معلم: Emmanouil MAVRAKIS
- معلم: Jean yves NATOLI
- معلم: Andre NICOLET
- معلم: Laurent NONY
- معلم: Matthew PIERI
- معلم: Gilles RENVERSEZ
- معلم: Carlotta ROVESTI
- معلم: Carmen RUIZ HERRERO
- معلم: Nicolas SANNER
- معلم: Julien SAVATIER
- معلم: Gabriel SORIANO
- معلم: Brian STOUT
- معلم: Jean-marc THEMLIN
- معلم: Cecile THIRION
- معلم: Johann TOUDERT
- معلم: Frank WAGNER
- معلم: Frederic ZOLLA
- معلم: Edyta DUMAS
- معلم: Nadege GUILLEM
- معلم: Amelie LITMAN
- معلم: Jean yves NATOLI
- معلم: Carlotta ROVESTI
- معلم: Frank WAGNER