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Laser Microprocessing: Safety & Types
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Related lectures (32)
Laser Diodes: Relaxation Oscillations
Explores laser diodes' relaxation oscillations and their role in laser modulation, including random intensity noise effects and practical examples.
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Explains mode locking techniques to achieve high peak power in lasers.
Laser Manufacturing: Characteristics and Applications
Explores laser characteristics, interaction with matter, and industrial applications in manufacturing processes.
Gain saturation
Explores gain saturation in laser systems and the dynamics of atoms in different energy levels, emphasizing the balance between pumping and emission processes.
Short Pulse Generation in Laser Systems
Explores short pulse generation in laser systems, covering inhomogeneous width, mode-locking regimes, and the optical Kerr effect.
Fiber coupling and relaxation oscillations
Explores fiber coupling and relaxation oscillations in laser diodes, focusing on modulating laser speed and changing beam shape.
Solid State and Semiconductor Laser
Covers the theory and applications of solid-state and semiconductor lasers, including different types of lasers and their efficiency.
Laser Fundamentals and Applications
Explores laser fundamentals, historical perspective, and modern applications in engineering.
Fiber Coupling with High Power Laser Diodes
Covers the design and transitions of high power laser diodes.
Overview of Lasers
Covers the main properties of lasers, historical data, active media, and pulsing techniques.
Laser Systems: Theory and Applications
Explores laser operation modules, including light-atom interaction, resonators, noise characteristics, and ultrafast lasers.
Ultrafast Laser Beam Steering
Explores ultrafast lasers, beam steering technologies, chirped pulses, and mode-locking for high laser powers.
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