TAILIEUCHUNG - 3D Laser Microfabrication Principles and Applications

Three-dimensional (3D) laser micro-fabrication has become a fast growing field of science and technology. The very first investigations of the laser modifications and structuring of materials immediately followed the invention of the laser in 1960. Starting from the observed photomodifications of laser rod materials and ripple formation on the irradiated surfaces as unwanted consequences of a high laser fluence, the potential of material structuring was tapped. The possibility arose of having a highly directional light beam, easily focused into close to diffraction- limited spot size, and with the arrival of pulsed lasers with progressively shorter pulse durations, the field of laser material processing emerged. Understanding the physical and chemical. | 4 WILEY-VCH Edited by Hiroaki Misawah Saulitis jLtodkajis 3D Laser Microfabrication Principles and Applications 3D Laser Microfabrication Edited by Hiroaki Misawa and Saulius Juodkazis 3D Laser Microfabrication. Principles and Applications. Edited by H. Misawa and S. Juodkazis Copyright 2006 WILEY-VCH Verlag GmbH Co. KGaA Weinheim ISBN 3-527-31055-X Related Titles Bordo V. G. Rubahn . Optics and Spectroscopy at Surfaces and Interfaces 281 pages with 144 figures 2005 Softcover ISBN 3-527-40560-7 Baumer S. ed. Handbook of Plastic Optics 199 pages with 135 figures and 37 tables 2005 Hardcover ISBN 3-527-40424-4 Franssila S. Introduction to Microfabrication 408 pages 2004 Hardcover ISBN 0-470-85105-8 Sinzinger S. Jahns J. Microoptics 447 pages with 209 figures and 12 tables 2003 Hardcover ISBN 3-527-40355-8 Schleich W. P. Quantum Optics in Phase Space 716 pages with 220 figures 2001 Hardcover ISBN 3-527-29435-X .

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