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Measurements of index of refraction and signal loss due to an ice fog medium at 97 GHz using a Fabry-Perot resonator

This paper describes the measurements of the complex dielectric constants of ice fogs using a Fabry-Perot cavity. The measurements were made at a frequency of 97 GHz over the temperature interval from -30\deg C to -48\deg C. The tests were conducted in an environmental chamber with the fog created b...

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Published in:I.R.E. transactions on antennas and propagation 1974-07, Vol.22 (4), p.613-616
Main Authors: Straiton, A., Fannin, B., Perry, J.
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Language:English
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description This paper describes the measurements of the complex dielectric constants of ice fogs using a Fabry-Perot cavity. The measurements were made at a frequency of 97 GHz over the temperature interval from -30\deg C to -48\deg C. The tests were conducted in an environmental chamber with the fog created by the introduction of a controlled amount of steam. For comparison purposes a helium-neon laser beam (6328 Å) was transmitted through the fog and its extinction coefficient measured. Fog particle number density measurements were made with a four stage cascade impactor. The complex index of refraction of the ice fog was determined from the change in resonant frequency and the amplitude response of the cavity when the fog was introduced. The results were normalized to one dB per meter attenuation of the laser beam intensity. On this basis the fogs studied in this experiment showed refractive index changes of 1 to 2 N units and extinction coefficients varying with temperature between 3 \times 10^{-6} and 5 times 10^{-7} cm -1
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The measurements were made at a frequency of 97 GHz over the temperature interval from -30\deg C to -48\deg C. The tests were conducted in an environmental chamber with the fog created by the introduction of a controlled amount of steam. For comparison purposes a helium-neon laser beam (6328 Å) was transmitted through the fog and its extinction coefficient measured. Fog particle number density measurements were made with a four stage cascade impactor. The complex index of refraction of the ice fog was determined from the change in resonant frequency and the amplitude response of the cavity when the fog was introduced. The results were normalized to one dB per meter attenuation of the laser beam intensity. 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The measurements were made at a frequency of 97 GHz over the temperature interval from -30\deg C to -48\deg C. The tests were conducted in an environmental chamber with the fog created by the introduction of a controlled amount of steam. For comparison purposes a helium-neon laser beam (6328 Å) was transmitted through the fog and its extinction coefficient measured. Fog particle number density measurements were made with a four stage cascade impactor. The complex index of refraction of the ice fog was determined from the change in resonant frequency and the amplitude response of the cavity when the fog was introduced. The results were normalized to one dB per meter attenuation of the laser beam intensity. 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identifier ISSN: 0018-926X
ispartof I.R.E. transactions on antennas and propagation, 1974-07, Vol.22 (4), p.613-616
issn 0018-926X
0096-1973
1558-2221
language eng
recordid cdi_ieee_primary_1140848
source IEEE Electronic Library (IEL) Journals
subjects Dielectric constant
Dielectric loss measurement
Dielectric measurements
Extinction coefficients
Fabry-Perot
Frequency measurement
Ice
Laser beams
Loss measurement
Quantum cascade lasers
title Measurements of index of refraction and signal loss due to an ice fog medium at 97 GHz using a Fabry-Perot resonator
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