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Werner Lauterborn

    Kohärente Optik
    Coherent optics
    • 1995

      Coherent optics

      Fundamentals and Applications

      Since the advent of the laser, coherent optics has developed at an ever increasing pace. There is no doubt about the reason. Coherent light, with its properties so different from the light we are surrounded by, lends itself to numerous applications in science, technology, and life. The bandwidth of coherent optics reaches from holography and interferometry, with its gravitational wave detectors, to the CD player for music, movies, and computers; from the laser scalpel, which allows surgical cutting in the interior of the eye without destruction of the layers penetrated in front of it, to optical information and data processing with its great impact on society. According to its importance, the foundations of coherent optics should be conveyed to students of natural sciences as early as possible to better prepare them for their future careers as physicists or engineers. The present book tries to serve this need: to promote the foundations of coherent optics. Special attention is paid to a thorough presentation of the fundamentals. This should enable the reader to follow the contemporary literature from a firm basis. The wealth of material, of course, makes necessary a restriction of the topics included. Therefore, from the main areas of optics, wave optics and the classical description oflight is given most ofthe space available. The book starts with a quick trip through the history of physics from the viewpoint of optics.

      Coherent optics
    • 1993

      Kohärente Optik

      • 290 pages
      • 11 hours of reading

      Inhaltsverzeichnis 1. Die Entwicklung der Optik: Vergangenheit, Gegenwart, Zukunft. 2. Hauptgebiete der Optik: Geometrische Optik, Wellenoptik, Quantenoptik, Statistische Optik. 3. Grundlagen der Wellenoptik: Maxwell-Gleichungen, Wellengleichung, Intensität von Lichtwellen. 4. Kohärenz: Zeitliche, räumliche und raumzeitliche Kohärenz, komplexe Darstellung des Lichtwellenfeldes, Stellarinterferometrie, Fourier-Spektroskopie, Intensitätskorrelation. 5. Vielstrahlinterferenz: Fabry-Perot-Interferometer, Modenspektrum von Lasern, Rückgekoppelte Interferometer. 6. Granulation: Intensitätsstatistik monofrequenter Speckelfelder, Speckelkorngrößen, Granulationsphotographie, stellare Speckel-Interferometrie. 7. Holographie: Prinzip, Abbildungsgleichungen, holographische Aufbauten, digitale Holographie. 8. Holographische Interferometrie: Verfahren und theoretische Beschreibung. 9. Fourieroptik: Skalare Beugungstheorie, Fouriertransformation durch Linsen, optische Fourierspektren, kohärente optische Filterung. 10. Nichtlineare Dynamik des Lasers: Aufbau, Laserratengleichungen, stationärer Betrieb, Stabilitätsanalyse, chaotische Dynamik. 11. Nichtlineare Optik: Zwei-Photonen-Absorption, Drei- und Vier-Wellen-Wechselwirkungen, Mehrphotonenprozesse, nichtlineare Potentiale, klassische Beschreibung der Lichtwellenwechselwirkung. 12. Optische Nachrichtentechnik und Datenverarbeitung: Glasfasern, Fasersensoren, optische Solitonen, faseroptisc

      Kohärente Optik