PDF Evanescent Waves: From Newtonian Optics to Atomic Optics (Springer Series in Optical Sciences (73), Band 73)
Beschreibung Evanescent Waves: From Newtonian Optics to Atomic Optics (Springer Series in Optical Sciences (73), Band 73)
Evanescent waves play a growing role in many different areas, such as guided optics, optical-fiber couplers, integrated optical elements, internal reflection spectroscopy, atom optics, dark-field microscopy, scanning tunneling optical microscopy, microaperture microscopy, and apertureless microscopies. This book describes the near field of an object through the role of the evanescent field in these areas of research. Intended as a reference for scientists and as an introduction at the graduate level.
Evanescent Waves: From Newtonian Optics to Atomic Optics (Springer Series in Optical Sciences (73), Band 73) Ebooks, PDF, ePub
Evanescent Waves: From Newtonian Optics To Atomic Optics ~ Evanescent Waves: From Newtonian Optics To Atomic Optics (Springer Series In Optical Sciences) (Springer Series in Optical Sciences (73), Band 73) / Fornel, Frederique De / ISBN: 9783642085130 / Kostenloser Versand fĂĽr alle BĂĽcher mit Versand und Verkauf duch .
Evanescent Waves: From Newtonian Optics to Atomic Optics ~ Evanescent Waves: From Newtonian Optics to Atomic Optics (Springer Series in Optical Sciences (73), Band 73) / Fornel, Frederique de / ISBN: 9783540658450 / Kostenloser Versand fĂĽr alle BĂĽcher mit Versand und Verkauf duch .
Absorption-Modulated Crossed-Optical Fiber-Sensor Platform ~ A new evanescent-wave fiber sensor is described that utilizes absorption-modulated luminescence (AML) in combination with a crossed-fiber sensor platform. The luminescence signals of two crossed-fiber reference regions, placed on opposite sides of the stretch of fiber supporting the absorbance sensor, monitor the optical intensity in the fiber core.
(PDF) A Discrete Model of the Evanescent Light Emission ~ [5] de Fornel, F. (2000) Evanescent Waves Fro m Newtonian Optics To Ato mic Optics, Vol. 73 of Springer Series in O pt i- cal Sciences . Springer Verlag, Berlin .
(PDF) Differential Evanescent Light Intensity Imaging of ~ We show that the forces associated with near-field optical micromanipulation can be greatly increased through the use of cavity enhanced evanescent waves. This approach utilizes a resonant .
Frustrated Total Internal Reflection: Resonant and ~ 1. Introduction. The phenomenon of frustrated total internal reflection (FTIR) with a dynamic range of altering reflection, which was firstly found by Newton, has played a critical role in optical experiment and engineering, such as multi-touch sensor, single-pulse Q switching in cavity resonator and single-fiber breakdown spectroscopy , .
(PDF) Reflectionless Tunnelling of Light in Gradient Optics ~ 30, 32 Coatings (for example, from metamaterials) can be also applied for amplification of evanescent electromagnetic waves (tunneling). 32,38 For waveguides, there exists the lowest frequencythe .
(PDF) Plasmonic light scattering from nanoscopic metal tips ~ Attosecond science is based on electron dynamics driven by a strong optical electric field and has evolved beyond its original scope in gas-phase atomic and molecular physics to solid-state .
(PDF) Fluorescent response of dye-filled suspended-core ~ 2 Institute of Photonics and Optical Science, . “ Evanescent Waves: From Newtonian Optics to. Atomic Optics, ” V ol. 73 of Springer Series in Optical Sciences (Springer-V erlag, 2001), Table .
Physics - spotlighting exceptional research ~ Optical Clocks Join the Hunt for Dark Matter November 12, 2020. Researchers use precise clocks and an extremely stable optical cavity to find new constraints on how the dilaton, a hypothesized dark matter particle, interacts with ordinary matter. Read More »
Semiconductor Quantum Optics / Kira, Mackillo; Koch ~ The book combines theoretical methods from quantum optics and solid-state physics to give a consistent microscopic description of light-matter- and many-body-interaction effects in low-dimensional semiconductor nanostructures. It develops the systematic theory needed to treat semiconductor quantum-optical effects, such as strong light-matter coupling, light-matter entanglement, squeezing, as .
EVANESCENT WAVES: FROM NEWTONIAN OPTICS TO ATOMIC OPTICS ~ EVANESCENT WAVES: FROM NEWTONIAN OPTICS TO ATOMIC OPTICS (2001) (SPRINGER SERIES IN OPTICAL SCIENCES, #73) BY DE FORNEL, FREDERIQUE (AUTHOR)HARDCOVER / Frederique de Fornel / ISBN: / Kostenloser Versand fĂĽr alle BĂĽcher mit Versand und Verkauf duch .
Hydrogen spectral series - Wikipedia ~ The emission spectrum of atomic hydrogen has been divided into a number of spectral series, with wavelengths given by the Rydberg formula.These observed spectral lines are due to the electron making transitions between two energy levels in an atom. The classification of the series by the Rydberg formula was important in the development of quantum mechanics.
Optical coherence and electromagnetic surface waves ~ Optical evanescent waves are a special type of electromagnetic surface waves, formed when a light field undergoes total internal reflection at a dielectric boundary (de Fornel, 2001). When interacting with matter, evanescent waves enable a phenomenon analogous to quantum mechanical tunneling through a potential barrier ( de Fornel, 2001 ; Novotny & Hecht, 2012 ).
ELECTRON OPTICS WITH DIRAC FERMIONS: ELECTRON TRANSPORT IN ~ In this review article we discuss the recent progress in studying ballistic transport for charge carriers in graphene through highly inhomogeneous magnetic field known as magnetic barrier in combin.
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Japanese Journal of Applied Physics - IOPscience ~ The discussion of our atomic-scale understanding of physicochemical reactions involving ion bombardment and neutral transport presents the major challenges shared across the plasma science and technology community. Focus is placed on advances in fabrication technology that control surface reactions on three-dimensional features, as well as state-of-the-art techniques used in semiconductor .
Dispersion relation - Wikipedia ~ Dispersion occurs when pure plane waves of different wavelengths have different propagation velocities, so that a wave packet of mixed wavelengths tends to spread out in space. The speed of a plane wave, , is a function of the wave's wavelength : = (). The wave's speed, wavelength, and frequency, f, are related by the identity = ().The function () expresses the dispersion relation of the given .
IOPscience ~ The homepage of IOPscience, home to more than 130 years of leading scientific research journal content
Metamaterial - Wikipedia ~ A metamaterial (from the Greek word μετά meta, meaning "beyond" and the Latin word materia, meaning "matter" or "material") is any material engineered to have a property that is not found in naturally occurring materials. They are made from assemblies of multiple elements fashioned from composite materials such as metals and plastics. The materials are usually arranged in repeating .
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