Understanding the Atom: Lasers
Author: U.S. Atomic Energy Commission
Publisher:
Published: 1969
Total Pages: 64
ISBN-13:
DOWNLOAD EBOOKRead and Download eBook Full
Author: U.S. Atomic Energy Commission
Publisher:
Published: 1969
Total Pages: 64
ISBN-13:
DOWNLOAD EBOOKAuthor: Marvin H. Mittleman
Publisher: Springer Science & Business Media
Published: 2013-11-21
Total Pages: 318
ISBN-13: 1489924361
DOWNLOAD EBOOKIn response to the explosion of theories and experiments since the appearance of the first edition, the author has revised and expanded his basic text. New sections include up-to-date discussions of multiphoton ionization, and electron-atom and atom-atom scattering in laser fields, reaffirming the work's position as the standard introduction to the field.
Author: V. S. Letokhov
Publisher: Oxford University Press on Demand
Published: 2007-02-15
Total Pages: 323
ISBN-13: 0198528167
DOWNLOAD EBOOKThis text treats laser light as a universal tool to control matter at the atomic and molecular level, one of the most exciting applications of lasers. Lasers can heat matter, cool atoms to ultra-low temperatures where they show quantum collective behaviour, and can act selectively on specific atoms and molecules for their detection and separation.
Author: C. J. Joachain
Publisher: Cambridge University Press
Published: 2012
Total Pages: 581
ISBN-13: 0521793017
DOWNLOAD EBOOKA unified account of the rapidly developing field of high-intensity laser-atom interactions, suitable for both graduate students and researchers.
Author: S. Martellucci
Publisher: Springer Science & Business Media
Published: 2007-05-08
Total Pages: 322
ISBN-13: 0306471035
DOWNLOAD EBOOKProceedings of the International School of Quantum Electronics 27th course on Bose Einstein Condensates and Atom Lasers, October 19-24, 1999, Erice, Italy. Since the experimental demonstration of Bose Einstein Condensation in dilute atomic gases there has been an explosion of interest in the properties of this novel macroscopic quantum system. The book covers the methods used to produce these new samples of coherent atoms, their manipulation and the study of their properties. Emphasis is given to the anticipated development of new types of sources, which more and more resemble traditional types of lasers. Because of recent new applications and increasing demand for lasers, sensors and associated instrumentation, the chapters also cover current developments in the basic techniques, materials and applications in the field of the generation of coherent atoms.
Author: Jeff Hecht
Publisher: John Wiley & Sons
Published: 2018-12-27
Total Pages: 608
ISBN-13: 1119310644
DOWNLOAD EBOOKThe expanded fourth edition of the book that offers an essential introduction to laser technology and the newest developments in the field The revised and updated fourth edition of Understanding Lasers offers an essential guide and introduction that explores how lasers work, what they do, and how they are applied in the real world. The author—a Fellow of The Optical Society—reviews the key concepts of physics and optics that are essential for understanding lasers and explains how lasers operate. The book also contains information on the optical accessories used with lasers. Written in non-technical terms, the book gives an overview of the wide-variety laser types and configurations. Understanding Lasers covers fiber, solid-state, excimer, helium-neon, carbon dioxide, free-electron lasers, and more. In addition, the book also explains concepts such as the difference between laser oscillation and amplification, the importance of laser gain, and tunable lasers. The updated fourth edition highlights the most recent research and development in the field. This important resource: Includes a new chapter on fiber lasers and amplifiers Reviews new topics on physics of optical fibers and fiber lasers, disk lasers, and Ytterbium lasers Contains new sections on Laser Geometry and Implications, Diode Laser Structures, Optimal Parametric Sources, and 3D Printing and Additive Manufacturing Puts the focus on research and emerging developments in areas such as spectroscopy, slow light, laser cooling, and extremely precise measurements Contains appendices, glossary, and index that help make this book a useful reference Written for engineering and physics students, engineers, scientists, and technicians, the fourth edition of Understanding Lasers contains the basic concepts of lasers and the most recent advances in the technology.
Author: Pierre Meystre
Publisher: Springer Science & Business Media
Published: 2001-09-21
Total Pages: 332
ISBN-13: 9780387952741
DOWNLOAD EBOOKQuantum mechanics does away with the distinction between particles and waves, and one of the more interesting implications of the wave/particle duality - the discovery that atoms may be manipulated in ways analogous to the manipulation of light with lenses and mirrors - has formed the basis for the relatively new field of atom optics. Pierre Meystre's Atom Optics is the first book entirely devoted to this exciting area of research. Reference links to the leading journals in the field, links to research sites, graphics, and updates can be found online.
Author: Dieter Suter
Publisher: Cambridge University Press
Published: 1997-10-13
Total Pages: 473
ISBN-13: 0521462398
DOWNLOAD EBOOKA thorough introduction to the interaction of atoms with optical and magnetic fields; for graduate students and researchers.
Author: Dimitri Batani
Publisher: Springer Science & Business Media
Published: 2001-09-30
Total Pages: 434
ISBN-13: 9780306466151
DOWNLOAD EBOOKProceedings of the 30th Course of the International School of Quantum Electronics on Atoms, Solids and Plasmas in Super-Intense Laser Fields, held 8-14 July, in Erice, Sicily
Author: Harold J. Metcalf
Publisher: Springer Science & Business Media
Published: 2012-12-06
Total Pages: 329
ISBN-13: 146121470X
DOWNLOAD EBOOKIntended for advanced undergraduates and beginning graduates with some basic knowledge of optics and quantum mechanics, this text begins with a review of the relevant results of quantum mechanics, before turning to the electromagnetic interactions involved in slowing and trapping atoms and ions, in both magnetic and optical traps. The concluding chapters discuss a broad range of applications, from atomic clocks and studies of collision processes, to diffraction and interference of atomic beams at optical lattices and Bose-Einstein condensation.