The Physics of Laser Radiation-Matter Interaction : Fundamentals, and Selected Applications in Metrology Hardback
by Alexander Horn
Hardback
Description
This textbook explains the fundamental processes involved in the interaction of electromagnetic radiation with matter.
It leads students from a general discussion of electrodynamics, forming the mathematical foundation for the Maxwell equations, to key results such as the Fresnel equations, Snell’s law, and the Brewster angle, deriving along the way the equations for accelerated charges and discussing dipole radiation, Bremsstrahlung and synchrotron radiation.
By considering more and more interacting particles, the book advances its treatment of the subject, approaching the solid-state regime using both classical and quantum mechanical approaches to describe interaction paths with electromagnetic radiation.
Finally, specific interactions of laser radiation with matter are explained such as ultrafast, coherent, and selective interaction.
With an emphasis on achieving an intuitive grasp of the basic physics underlying common laser technology, this textbook is ideal for graduate students seeking both a better fundamental and applied understanding of laser–matter interaction.
Information
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Out of stock
- Format:Hardback
- Pages:422 pages, 191 Illustrations, color; 10 Illustrations, black and white; XXVI, 422 p. 201 illus., 191
- Publisher:Springer International Publishing AG
- Publication Date:21/11/2022
- Category:
- ISBN:9783031158612
Other Formats
- Paperback / softback from £49.15
Information
-
Out of stock
- Format:Hardback
- Pages:422 pages, 191 Illustrations, color; 10 Illustrations, black and white; XXVI, 422 p. 201 illus., 191
- Publisher:Springer International Publishing AG
- Publication Date:21/11/2022
- Category:
- ISBN:9783031158612