5 edition of Magneto-Optical Imaging (Nato Science Series II: Mathematics, Physics and Chemistry, 142) found in the catalog.
May 31, 2004 by Springer .
Written in English
|Contributions||Tom H. Johansen (Editor), Daniel V. Shantsev (Editor)|
|The Physical Object|
|Number of Pages||360|
The final prices may differ from the prices shown due to specifics of VAT rules About this book This book provides expert coverage of modern and novel aspects of the study of vortex matter, dynamics, and pinning in nanostructured and multi-component superconductors. Comparison of magneto-optical imaging with other local magnetic probes; S. Magneto-optical imaging of cracking in high temperature superconducting films and tapes under tensile strain-- I. Some of the covered optical applications of lock-in amplifiers are optical spectroscopy, including absorption spectroscopy, fluorescence spectroscopy, and phosphorescence spectroscopy; optical interferometry, including detailed presentations of the various spectrometers used with lock-in amplifiers; crystal research and technology, including explanations of magneto-optical, electromechanical, and electro-optical effects; infrared thermography; laser wavelength stabilization; and advanced microscopy.
Magneto-optical imaging of pattern formation in the vortex landscape-- R. Polyanskii, et al. Ballistic imaging modalities aim to reject non-ballistic photons and retain ballistic photons that carry useful information. Wijngaarden, et al.
Krafft, et al. Sohatsky, V. Laviano, et al. Inversion of the Biot-Savart law: An approach based on discrete sine and cosine transforms; M.
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Superconductor magneto-optics and theory-- E. Koblischka-Veneva, M. Crowell, Electrical detection of spin transport in lateral ferromagnet—semiconductor devices, Nature Physics 3, The purpose of this text is to provide a step-by-step introduction to the technique of phase-sensitive detection using lock-in amplifiers, and to provide examples of its applications in optical instruments.
Flament, et al. Associated Product s. Landau and E.
An introduction into magneto-optical effects shows that the phenomenon arises from the different interactions of the magnetized medium to right and left-handed circularly polarized light.
These coherent photons are referred to as ballistic photons. The digital difference technique is used for quantitative analysis of the magneto-optical images. Superconductor magneto-optics and theory; E.
Magneto-optic investigation of magnetic flux penetration on a nanosecond timescale; B. MOI of magnetic materials. This expression indicates that the size of the Faraday rotation observed increases when the incident light is close to a resonance of an electronic transition.
This describes a change in the index of refraction as a function of wavelength, where, in the long wavelength regime, as shown in Fig. Gerhard Kloos. Motsnyi, Z. Furthermore, Eq. The first point of the digital ramp was triggered; this set the maximum positive field.
Tamegai, et al. First order transition of the vortex lattice in disordered Bi crystals; K. Johansen, et al.Magneto-optical imaging (MOI) is an excellent tool to visualize magnetic flux patterns in superconductors with high spatial as well as temporal resolution.
In this paper, we develop an approach to magneto optical imaging (MOI), applying a ghost imaging (GI) protocol to perform Faraday microscopy. MOI is of the utmost importance for the investigation of magnetic properties of material samples, through Weiss Author: Meda, A.
Time-resolved imaging of electric field induced domain wall rotation is shown. Visualization of magnetization dynamics down to picosecond temporal resolution for the imaging of spin-waves and magneto-optical multi-effect domain imaging techniques for.
Nov 28, · Magneto-optical chips The magneto-optical technology is an imaging method for magnetic measurement, forensic investigations and non-destructive testing. The magneto-optical chips provide ﬁeld analysis and quality assurance of diﬀerent magnetic materials.
The flagship monthly journal of SPIE, Optical Engineering (OE) publishes peer-reviewed papers reporting on research and development in all areas of optics, photonics, and imaging science and engineering.
Medical optical imaging is the use of light as an investigational imaging technique for medical applications. Examples include optical microscopy, spectroscopy, endoscopy, scanning laser ophthalmoscopy, laser Doppler imaging, and optical coherence atlasbowling.come light is an electromagnetic wave, similar phenomena occur in X-rays, microwaves, and radio waves.