1997
DOI: 10.1103/physreva.55.2406
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Direct detection of evanescent electromagnetic waves at a planar dielectric surface by laser atomic spectroscopy

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Cited by 46 publications
(21 citation statements)
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“…Optical spectroscopy using EW is also useful to observe atoms located near the surface. 22,23 A combination of such magnetic and optical techniques at the surface would offer a new tool for use in atomic physics. 24 However, the demonstration of such techniques has been rather limited, partly because magnetic materials that are transparent and, thus, allow optical access are not very common.…”
Section: Introductionmentioning
confidence: 99%
“…Optical spectroscopy using EW is also useful to observe atoms located near the surface. 22,23 A combination of such magnetic and optical techniques at the surface would offer a new tool for use in atomic physics. 24 However, the demonstration of such techniques has been rather limited, partly because magnetic materials that are transparent and, thus, allow optical access are not very common.…”
Section: Introductionmentioning
confidence: 99%
“…Observation of total reflection of light at a dielectric/ vapor interface is known to be a powerful spectroscopic tool to investigate atoms near the surface [1][2][3][4][5][6]. The reflected light is attenuated by vapor atoms absorbing the evanescent light which penetrates into the vapor by a few wavelengths from the surface.…”
mentioning
confidence: 99%
“…These quantities are due, respectively, to the invariance under spatial parallel-displacement and rotational transform of a specific local atom-plus-surface system. We have already reported an experimental demonstration of pseudo-momentum transfer from evanescent waves to atoms via resonant absorption process near a planar dielectric surface by means of a high-resolution laser spectroscopy at the Cs-D 2 line (Matsudo et al, 1997;Matsudo et al, 1998). In these experiments, the atomic motion, i.e.…”
Section: Properties Of Optical Near-field Interactions and Observationsmentioning
confidence: 99%