Buch, Englisch, 498 Seiten, Format (B × H): 177 mm x 248 mm, Gewicht: 1229 g
ISBN: 978-3-527-41150-4
Verlag: WILEY-VCH
scientific applications. Recently, significant progress has beenmade in coherent beam combining lasers, with a total output power of 100 kW already achieved. Scaling
analysis indicates that further increase of output power with excellent beam quality is feasible by using existing state-of-the-art lasers. Thus, the knowledge of coherent beam combining techniques will become crucial for the design of next-generation highpower lasers. The purpose of this book is to present the more recent concepts of coherent beam combining by world leader teams in the field.
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Part A: Coherent combining with active phase control
Engineering of coherently combined, high- power laser systems
Coherent beam combining of fiber amplifiers via LOCSET
Kilowatt coherent beam combining of high- power fiber amplifiers using single- frequency dithering technique
Active coherent combination using hill- climbing based algorithms for fiber and semiconductor amplifiers
Collective coherent cimbining of a large number of fiber amplifiers
Coherent beam combining and atmospheric compensation with adaptive fiber- array systems
Refractive index changes in rare- earth- doped optical fibers and their application for all- fiber coherent beam combining
Coherent beam combining of pulsed fiber amplifiers in the long- pulse regime (nano- to micro- second)
Coherent beam combing in the femtosecond regime
Part B: Passive and self- organized phase locking
Modal theory of coupled resonators for external cavity beam combining
Self- organized fiber beam combining
Coherent combining and phase locking of fiber lasers
Intracavity combining of quantum cascade lasers
Phase conjugate self- organised coherent beam combination
Coherent beam combining using phase controlled stimulated brillouin scattering phase conjugate mirror