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the claim
The optical glory is caused by backscattering of light from cloud droplets.
the verdict
SUPPORTED
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2 sources for · 0 against

Reference sources confirm that the atmospheric optical glory is produced by the backscattering of light from cloud droplets.

Evidence for · 2
1997 · cited by 0
On 20 January 1995, an apparent cirrus cloud glory was photographed over central Utah from an airline passing through the 10.7 km MSL level as it began its descent into Salt Lake City International Airport. The cirrus cloud layer was geographically widespread and optically thin enough to view the snow-covered Wasatch Mountain Plateau beneath the cloud. The glory was easily visible surrounding the shadow of the aircraft, ahead of a short contrail. Photographic analysis shows a single reddish-brown ring of ~2.1° radius surrounding a central bright spot, although a vague second ring appeared visually to have been present over the brief (~3-min) observation period. The presence of a glory can only be accounted for through the interference effects of the backscattered light rays for particles that are spherical in shape. Coincident Salt Lake City radiosonde data show a cirrus cloud top temperature in the -50° to -55°C range. We are unable to evoke the presence of other, more exotic cloud forming substances at the indicated cloud temperature to explain this phenomenon. Hence, employing Mie theory scattering simulations, we conclude that this apparently unique atmospheric optical observation provides evidence for the occurrence of a population of ~20 μm diameter spherical ice particles. This size is consistent with those derived from cirrus cloud top corona displays, although in such cases unusually high linear depolarization ratios suggest the presence of complicated particle shapes. The lack of vivid colorization in the glory implies that the particle size distribution may have been broader than those of typical cloud droplet populations producing glories, or that the ice spheres were somewhat irregular in surface complexity. The brief appearance of this cirrus cloud glory, and its location over mountainous terrain, suggests that the cloud generating mechanism was a mountain wave cloud at about the cirrus cloud top position.
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rails:sufficiency:supported:for=2+0p:against=0+0p | v55:sufficiency

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droplets is the glory. A glory is an optical phenomenon, appearing much like an iconic Saint's halo about the head of the observer, produced by light Atmospheric optics is "the study of the optical characteristics of the atmosphere or products of atmospheric processes .... [including] temporal and spatial resolutions beyond those discernible with the naked eye". Meteorological optics is "that part of atmospheric optics concerned with the study of patterns observable with the naked eye". Nevertheless, the two terms are sometimes used interchange A common optical phenomenon involving water droplets is the glory. A glory is an optical phenomenon, appearing much like an iconic Saint's halo about the head of the observer, produced by light backscattered (a combination of diffraction, reflection and refraction) towards its source by a cloud of uniformly sized water droplets. A glory has multiple colored rings, with red colors on the outermost ring and blue/violet colors on the innermost ring. The angular distance is much smaller than a rainbow, ranging between 5° and 20°, depending on the size of the droplets. The glory can only be seen when the observer is directly between the Sun and cloud of refracting water droplets. Hence, it is commonly observed while airborne, with the glory surrounding the airplane's shadow on clouds (this is often called The Glory of the Pilot). Glories can also be seen from mountains and tall buildings, when there are clouds or fog below the level of the observer, or on days with ground fog. The glory is related to the optical phenomenon anthelion.
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  1. A Cirrus Cloud Glorypeer-reviewedno side taken
  2. Atmospheric opticsreferenceno side taken
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