Durham Medical Books > Optics > The physical principles of magneto-optical recording - download pdf or read online

The physical principles of magneto-optical recording - download pdf or read online

By Masud Mansuripur

ISBN-10: 0521461243

ISBN-13: 9780521461245

This e-book covers the physics of magneto-optical recording, starting with first ideas, and dealing via to modern state of the art themes. the 1st half the ebook teaches the idea of diffraction utilizing an unique unified strategy. It additionally covers the optics of multilayers, polarization optics, noise in photodetection, and thermal points. the second one half the e-book describes the fundamentals of magnetism and magnetic fabrics, magneto-static box calculations, domain names and area partitions, the mean-field idea, magnetization dynamics, the idea of coercivity, and the method of thermomagnetic recording. quite a few examples in keeping with real-world difficulties encountered within the engineering layout of magneto-optical media and structures will supply the reader beneficial insights into the technology and expertise of optical recording. large challenge units are integrated

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The physical principles of magneto-optical recording by Masud Mansuripur PDF

This ebook covers the physics of magneto-optical recording, starting with first ideas, and dealing via to modern state of the art subject matters. the 1st half the e-book teaches the idea of diffraction utilizing an unique unified technique. It additionally covers the optics of multilayers, polarization optics, noise in photodetection, and thermal elements.

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Extra info for The physical principles of magneto-optical recording

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2 Physical Properties* Physical properties of optical crystals in this section are grouped into three tables: isotropic crystals, uniaxial crystals, and biaxial crystals. Materials are listed alphabetically in order of the chemical formulas. The following properties are included: Density: Data are for room temperature. Hardness: This is an empirical and relative measure of a material’s resistance to wear. Average Knoop (indentation test) hardness numbers or range of values at room temperature are given when available.

If a crystal is listed as insoluble, it means that, when submerged in water with a reasonable amount of time (a day or so), no noticeable loss of weight nor visible surface erosion of the crystal is observed. * This section was adapted from “Optical Crystals” by B. H. T. Chai, Handbook of Laser Science and Technology, Suppl. 2, Optical Materials (CRC Press, Boca Raton, FL, 1995), p. 30 ff (with additions). 2(200) 8 (Mohs) – – – 8 (Mohs) – – – – 1 (Mohs) . 5–3 (Mohs) Cleavage Solubility (ºC) plane (g/100 g H2O) (001)-p – – – – – – – – – – – – – – – – – – (1010)-p (0001)-i – – – – – – – (101)-p .

Materials are listed alphabetically in order of the chemical formulas. The following properties are included: Density: Data are for room temperature. Hardness: This is an empirical and relative measure of a material’s resistance to wear. Average Knoop (indentation test) hardness numbers or range of values at room temperature are given when available. In many cases only Vicker (V) or Mohs hardness are known. This is indicated parentheses after the value. The hardness of a crystal varies with orientation even for cubic symmetry crystals.

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The physical principles of magneto-optical recording by Masud Mansuripur


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