Millimeter-wave scattering from neutral and charged water droplets
โ Scribed by A. Heifetz; H.T. Chien; S. Liao; N. Gopalsami; A.C. Raptis
- Book ID
- 104029103
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 873 KB
- Volume
- 111
- Category
- Article
- ISSN
- 0022-4073
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โฆ Synopsis
We investigated 94 GHz millimeter-wave (MMW) scattering from neutral and charged water mist produced in the laboratory with an ultrasonic atomizer. Diffusion charging of the mist was accomplished with a negative ion generator (NIG). We observed increased forward-and backscattering of MMW from charged mist, as compared to MMW scattering from an uncharged mist. In order to interpret the experimental results, we developed a model based on classical electrodynamics theory of scattering from a dielectric sphere with diffusion-deposited mobile surface charge. In this approach, scattering and extinction cross-sections are calculated for a charged Rayleigh particle with effective dielectric constant consisting of the volume dielectric function of the neutral sphere and surface dielectric function due to the oscillation of the surface charge in the presence of applied electric field. For small droplets with radius smaller than 100 nm, this model predicts increased MMW scattering from charged mist, which is qualitatively consistent with the experimental observations. The objective of this work is to develop indirect remote sensing of radioactive gases via their charging action on atmospheric humid air.
๐ SIMILAR VOLUMES
Stimulated Raman scattering (SRS) from an individual liquid droplet (-30-Am radius) has been observed for H 2 0, D 2 0, and ethanol. The occurrence of a series of spectrally narrow peaks that are regularly spaced in wavelength is consistent with morphology-dependent resonances of the droplet, which