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Contemporary optics is the foundation of many of today's technologies including various focusing and defocusing devices, microscopies and imaging techniques. Light and X-ray Optis for Materials Scientists and Engineers offers a guide to basic concepts and provides an accessible framework for understanding this highly application-relevant branch of science for materials scientists, physicists, chemists, biologists, and engineers trained in different disciplines. The text links the fundamentals of optics to modern applications, especially for promotion of nanotechnology and life science, such as conventional, near-field, confocal, phase-contrast microscopies and imaging schemes based on interference and diffraction phenomena. Written by a noted expert and experienced instructor, the book contains numerous worked examples throughout to help the reader gain a thorough understanding of the concepts and information presented. The text covers a wide range of relevant topics, including reflection, refraction, and focusing phenomena, wave polarization and birefringence in crystals, optics in negative materials, metamaterials, and photonic structures, holography, light and X-ray interferometry, extensive description of diffraction optics, including dynamical X-ray diffraction, and more.
Geometrical optics. --- Quantum optics. --- Light. --- Fermat's theorem. --- Microscopy. --- Photochemistry. --- Optique géométrique. --- Optique quantique. --- Lumière. --- Fermat, Théorème de. --- Microscopie. --- Photochimie. --- Photophysique. --- Fermat, Pierre de, --- Light Difraction. --- Microscopic Imaging. --- Optical Devices. --- Wave interference. --- X-ray Diffraction. --- Optique géométrique. --- Lumière. --- Fermat, Théorème de.
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"Optics--a field of physics focusing on the study of light--is also central to many areas of biology, including vision, ecology, botany, animal behavior, neurobiology, and molecular biology. The Optics of Life introduces the fundamentals of optics to biologists and non-physicists, giving them the tools they need to successfully incorporate optical measurements and principles into their research. S©œnke Johnsen starts with the basics, describing the properties of light and the units and geometry of measurement. He then explores how light is created and propagates and how it interacts with matter, covering topics such as absorption, scattering, fluorescence, and polarization. Johnsen also provides a tutorial on how to measure light as well as an informative discussion of quantum mechanics. The Optics of Life features a host of examples drawn from nature and everyday life, and several appendixes that offer further practical guidance for researchers. This concise book uses a minimum of equations and jargon, explaining the basic physics of light in a succinct and lively manner. It is the essential primer for working biologists and for anyone seeking an accessible introduction to optics"--
Photobiology. --- Physiological optics. --- Polarization (Light) --- Rotation of the plane of polarization --- Optics, Physiological --- Optical Phenomena. --- Light. --- Electromagnetic waves --- Optics --- Wave-motion, Theory of --- Optical rotation --- Stereochemistry --- Vision --- Biology --- Light --- Photochemistry --- Polarization --- Visible Radiation --- Light, Visible --- Photoradiation --- Radiation, Visible --- Photoradiations --- Radiations, Visible --- Visible Light --- Visible Radiations --- Photobiology --- Optical Phenomenon --- Optical Process --- Optical Concepts --- Optical Processes --- Concept, Optical --- Concepts, Optical --- Optical Concept --- Phenomena, Optical --- Phenomenon, Optical --- Process, Optical --- Processes, Optical --- Optics. Quantum optics --- Ophthalmology --- Physiological optics --- Light sources --- Spectrum analysis --- absorption. --- animal vision. --- bioluminescence. --- coherent scattering. --- color. --- elastic scattering. --- electric field. --- electrons. --- fluorescence. --- geometry. --- human vision. --- inelastic scattering. --- integrated measurements. --- irradiance. --- light emission. --- light measurement. --- light. --- luminescence. --- lux. --- magnetic field. --- matter. --- mechanoluminescence. --- optical energy. --- optical measurements. --- optics. --- particles. --- phosphorescence. --- photon energy. --- photons. --- photosynthetically active radiation. --- polarization. --- polarized light. --- quantum entanglement. --- quantum mechanics. --- radiance. --- reflection. --- refraction. --- scattering. --- single scattering. --- sonoluminescence. --- spectra. --- spectral measurements. --- spectrometers. --- spectroradiometer. --- sun. --- thermal radiation. --- two-slit interference. --- uncertainty principle. --- units. --- wave interference. --- wave-particle duality. --- wavelength. --- waves.
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