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Dive into the research topics where Walter Heitmann is active.

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Featured researches published by Walter Heitmann.


Journal of optical communications | 2004

Infrared absorption of silica fibers

Walter Heitmann; Karl-Friedrich Klein

Based on precise measurements of the attenuation coefficient an extended formula was developed for the calculation of the infrared absorption of silica between 1.3 μm and 1.7 μm wavelength, using a silica-based single-mode fiber with undoped core and fluorine-doped cladding. Below 1.3 μm, the infrared absorption is negligible due to our analysis: < 0.001 dB/km. Above 1.3 μm, the infrared absorption increases slowly with increasing wavelength; however, the slope becomes much steeper around 1.5 μm. Therefore, this function can be approximated more precisely by two exponential functions instead of only one exponential function as assumed so far. The four coefficients have been determined. At 1.55 pm, we obtained an infrared absorption coefficient of α IR,λ = 0.014 dB/km, which is in the middle of the values (0.021 dB/km respectively 0.009 dB/km) determined in the past.


Journal of optical communications | 2004

Infrared Radiation Loss Measurements of a Quartz Capillary

Klaus J. Siemsen; Walter Heitmann; Karl-Friedrich Klein

A carbon dioxide laser was used to measure the transmission of a 0.5 mm diameter hollow quartz fiber near the first lattice absorption band, where the refractive index is below unity. The experimental values are close to the theoretical expectations. The laser measurements were supplemented by measurements with a continuously tunable incoherent light source.


Archive | 2002

Optical system for injection of light from a light source into a medium

Wolfgang Dultz; Bernhard Hils; Heidrun Schmitzer; Walter Heitmann


Archive | 1998

Glass for optical waveguides or the like

Walter Heitmann; Karl-Friedrich Klein


Archive | 2000

Method using photonic crystals for the dispersion compensation of optical signals of different wavelengths which are transmitted together

Walter Heitmann; Hans W. P. Koops


Archive | 1997

Quartz glass optical transmission element e.g. a waveguide, optical component or integrated-optics circuit

Walter Heitmann; Karl-Friedrich Klein


Archive | 2001

Optical wageguide based on quartz glass and method for the production thereof

Wolfgang Dultz; Walter Heitmann; Karl-Friedrich Klein


Archive | 2001

Lens for coupling light from a source of light into a medium has a light-guiding surface to guide light through reflection or refraction into the medium.

Wolfgang Dultz; Bernhard Hils; Heidrun Schmitzer; Walter Heitmann


Archive | 1998

Glass with artificial isotope ratio for optical wave guides

Walter Heitmann; Karl-Friedrich Klein


Archive | 1998

Physical-contact optical fiber connector

Walter Heitmann

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Bernhard Hils

Goethe University Frankfurt

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