About: Group refractive index of fused silica and white-light spectral interferometry with a dispersive Michelson interferometer.     Goto   Sponge   NotDistinct   Permalink

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  • The spectral interference of two beams from a white-light source, a tungsten halogen lamp, is measured at the output of a dispersive Michelson interferometer by a low-resolution miniature fiber optic spectrometer when the interferometer beam splitter is made of fused silica. It is confirmed that the spectral interference fringes are resolved only in the vicinity of the equalization wavelength whose value is dependent on the group optical path difference in the interferometer. Thus, the equalization wavelength is measured as a function of the displacement in the interferometer in the spectral range approximately from 490 to 870 nm. Moreover, when the group refractive index of fused silica is evaluated at the equalization wavelengths by using the Sellmeier dispersion equation, it is confirmed, in accordance with the theory, that the measured displacement as a function of the group refractive index of fused silica is a straight line whose slope gives the effective thickness of the beam splitter.
  • The spectral interference of two beams from a white-light source, a tungsten halogen lamp, is measured at the output of a dispersive Michelson interferometer by a low-resolution miniature fiber optic spectrometer when the interferometer beam splitter is made of fused silica. It is confirmed that the spectral interference fringes are resolved only in the vicinity of the equalization wavelength whose value is dependent on the group optical path difference in the interferometer. Thus, the equalization wavelength is measured as a function of the displacement in the interferometer in the spectral range approximately from 490 to 870 nm. Moreover, when the group refractive index of fused silica is evaluated at the equalization wavelengths by using the Sellmeier dispersion equation, it is confirmed, in accordance with the theory, that the measured displacement as a function of the group refractive index of fused silica is a straight line whose slope gives the effective thickness of the beam splitter. (en)
Title
  • Group refractive index of fused silica and white-light spectral interferometry with a dispersive Michelson interferometer.
  • Group refractive index of fused silica and white-light spectral interferometry with a dispersive Michelson interferometer. (en)
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  • Group refractive index of fused silica and white-light spectral interferometry with a dispersive Michelson interferometer.
  • Group refractive index of fused silica and white-light spectral interferometry with a dispersive Michelson interferometer. (en)
skos:notation
  • RIV/47813059:19240/01:20000009!RIV/2002/GA0/192402/N
http://linked.open.../vavai/riv/strany
  • 229;23
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  • P(GA202/01/0077)
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  • 681395
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  • RIV/47813059:19240/01:20000009
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  • White-light source; dispersive Michelson interferometer; low-resolution spectrometer; spectral interferogram; displacement; equalization wavelength; group refractive index dispersion; beam splitter; fuse (en)
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  • [37A925FDB4C7]
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  • Munich, Germany
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  • Munich
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  • Proceedings of SPIE Optical Measurement Systems for Industrial Inspection II: Application in Industrial Design
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  • Hlubina, Petr
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number of pages
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  • SPIE-The International Society for Optical Engineering
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  • 0-8194-4093-0
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  • 19240
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