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Titlebook: Near-field Nano/Atom Optics and Technology; Motoichi Ohtsu Book 1998 Springer Japan 1998 Dispersion.Nanomaterial.Raman spectroscopy.Taper.

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书目名称Near-field Nano/Atom Optics and Technology
编辑Motoichi Ohtsu
视频video
概述Covers not only near field optical microscopy but also wider fields such as local spectroscopy, nano-scale optical processing/storage, quantum near-field optics, and atom manipulation.Systematically c
图书封面Titlebook: Near-field Nano/Atom Optics and Technology;  Motoichi Ohtsu Book 1998 Springer Japan 1998 Dispersion.Nanomaterial.Raman spectroscopy.Taper.
描述Intrinsic features of the optical near field open a new frontier in optical science and technology by finally overcoming the diffraction limit to reach nanometric dimensions. But this book goes beyond near-field optical microscopy to cover local spectroscopy, nanoscale optical processing and storage, quantum near-field optics, and atom manipulation. .Near-Field Nano/Atom Optics and Technology. provides the first complete and systematically compiled account of the science and technology required to generate the near field, and features applications including imaging of biological specimens and diagnostics for semiconductor nanomaterials and devices. This monograph will be invaluable to researchers who want to implement near-field technology in their own work, and it can also be used as a textbook for graduate or undergraduate students.
出版日期Book 1998
关键词Dispersion; Nanomaterial; Raman spectroscopy; Taper; diffraction; imaging; microscopy; optics; photonics; pol
版次1
doihttps://doi.org/10.1007/978-4-431-67937-0
isbn_softcover978-4-431-68013-0
isbn_ebook978-4-431-67937-0
copyrightSpringer Japan 1998
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Functional Probes,s microor submicro-meter, which is equal to or less than an optical wavelength. However, it is worth noting that nanometric size is expected in the future with improved technology to be fully compatible with near-field optics.
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Near-Field Optical Atom Manipulation: Toward Atom Photonics, atom manipulation with high spatial accuracy. This chapter covers several methods of guiding and manipulating atoms by means of an optical near field. First, before discussing details, we will give an outline of the control of atomic motion based on the near-resonant mechanical interaction between an atom and an optical near field.
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High-Throughput Probes,t contribute to this loss, this chapter treats only the fiber probe without a protruded part, i.e., a flat-apertured probe. Its cross-sectional profile is shown in Fig. 4.1a, for which the foot diameter d. of the protruded probe in Fig. 4.1b can be called the aperture diameter.
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Diagnosing Semiconductor Nano-Materials and Devices,ental results obtained with an apertured probe (see Fig. 4.1) have been much more informative than data obtained using a protruded probe. Almost all the experiments in this chapter were performed using an apertured probe with foot diameters, .., from 100 nm to 1 μm.
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