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Identification of odd-radius halo arcs and of 44°/46° parhelia by their inner-edge polarization

机译:通过其内边缘极化识别奇数半径的晕弧和44°/ 46°的太阳伞

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Birefringence of ice causes the inner edges of refraction halos to be polarized. The direction of this polarization relates directly to the projection of the crystal main axis onto the sky. This implies that the inner-edge polarization can serve as an observational diagnostic for determining the actual nature of a halo arc if two competing explanations exist. The direction and the visibility of the inner-edge polar. ization of arcs and circular halos arising from usual ice crystals and from ice crystals with pyramidal ends are calculated. It is found that the observation of inner-edge polarization can be decisive for the identification of a spot that might be either a 44° parhelion or a 46° parhelion, of an arc that might be either a 22° sunvex Parry arc or a 20° Parroid arc arising from plate-oriented pyramidal crystals, and of an arc that might be either a 22° suncave Parry arc or a 23° Parroid arc from plate-oriented pyramidal crystals. (With a Parroid arc, a halo is that which arises from an ice wedge made up of two faces of a crystal that rotates about a vertically oriented spin axis, and the edge of the wedge is perpendicular to this spin axis.) Polarization properties of other rare arcs are discussed. Practical hints are given for observing visually the inner-edge polarization of halos. # 1998 Optical Society of America OCIS codes: 010.1290, 010.2940, 260.5430.
机译:冰的双折射会导致折射光环的内边缘偏振。这种极化的方向直接与晶体主轴向天空的投影有关。这意味着如果存在两个相互矛盾的解释,则内边缘极化可以用作观察诊断,以确定晕圈的实际性质。内边缘极的方向和可见性。计算了由通常的冰晶和具有金字塔形末端的冰晶产生的电弧和圆形光晕的大小。发现内边缘极化的观察对于确定可能是22°圆弧Parry弧或20°圆弧的点可能是决定性的,可能是44°反面或46°反面°由板状金字塔形晶体产生的仿形弧,以及由板状金字塔形晶体构成的22°凹面帕里弧或23°Paroid弧的弧。 (对于Paroid弧,光晕是由冰楔形物引起的,该冰楔形物是由围绕垂直定向的自旋轴旋转的晶体的两个面组成的,并且楔形的边缘垂直于该自旋轴。)讨论了其他稀有电弧。给出了从视觉上观察光环内边缘极化的实用提示。 #1998美国光学学会OCIS编码:010.1290、010.2940、260.5430。

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