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Defining and classifying industrial ultrashort pulse lasers and specifying the required parameters that should be included in industrial ultrashort pulse laser products, such as maximum average output power, pulse width, power stability, effective spot diameter, divergence angle, spot roundness, beam quality, signal-to-noise ratio, polarization direction, extinction ratio, pulse power stability, pulse rise-fall edge, pulse rise-fall time, position synchronized output, and environmental reliability are discussed in this guide. This guide also provides testing methods for the necessary parameters of industrial ultrashort pulse lasers.
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"Classical electromagnetism allows the rapidity of light field oscillations to be inferred from measurement of the speed and wavelength of light. Quantum mechanics connects the rapidity of electronic motion with the energy spacing of quantum states, accessible by light absorption and emission. These indirect measurements suggest that light as well as electrons vibrate within attoseconds, enabling us -- among others -- to see the world around us. Electronic motion is the primary step in any change of physical, chemical and biological properties of materials as well as in the functioning of living organisms. The current of electrons underlies all forms of modern signal processing. Observing and controlling these motions in real time may help us to explore the ultimate frontiers of electronics and gain insight into the behavior of materials, function and malfunction of living matter at the most fundamental level: the "glue" of atomic structures. This book is about how attosecond metrology emerged at the dawn of the new millennium to provide real-time access to the fastest motions outside the atomic nucleus and how this very technology is now opening prospects for real-world applications of far-reaching impact."
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This comprehensive volume provides a survey of the many innovations in the field of ultrashort pulse generation, and reviews the state of the art in compact, modelocked laser systems, discussing both their operational principles and potential applications. The theory of short optical pulse generation by modelocking is covered in the first chapter. Thereafter, modelocking techniques in different types of lasers are discussed: solid state lasers; diode-pumped lasers; fiber lasers; surface emitting semiconductor lasers; external cavity semiconductor lasers; hybrid soliton pulse sources; and monolithic colliding pulse modelocked diode lasers. Presenting both theoretical and experimental aspects throughout, this book will be invaluable to anyone interested in short pulse laser systems, and particularly to researchers involved in high-speed communications or the investigation of ultrafast phenomena.
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Laser pulses, ultrashort --- Laser spectroscopy --- Laser pulses, ultrashort --- Laser spectroscopy
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