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Dependence of positive and negative sprite morphology on lightning characteristics and upper atmospheric ambient conditions

机译:积极的和消极的雪碧的依赖形态学上和上闪电特征大气环境条件

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摘要

Carrot sprites, exhibiting both upward and downward propagating streamers, and columniform sprites, characterized by predominantly vertical downward streamers, represent two distinct morphological classes of lightning-driven transient luminous events in the upper atmosphere. It is found that positive cloud-to-ground lightning discharges (+CGs) associated with large charge moment changes (Qh_Q) tend to produce carrot sprites with the presence of a mesospheric region where the electric field exceeds the value 0.8E_k and persists for >~2 ms, whereas those associated with small Qh _Q are only able to produce columniform sprites. Columniform sprites may also appear in the periphery of a sprite halo produced by +CGs associated with large Qh_Q. For a sufficiently large Qh_Q, the time dynamics of the Qh_Q determines the specific shape of the carrot sprites. In the case when the sufficiently large Qh_Q is produced mainly by an impulsive return stroke, strong electric field is produced at high altitudes and manifests as a bright halo, and the corresponding conductivity enhancement lowers/enhances the probability of streamer initiation inside/below the sprite halo. A more impulsive return stroke leads to a more significant conductivity enhancement (i.e., a brighter halo). This conductivity enhancement also leads to fast decay and termination of the upper diffuse region of carrot sprites because it effectively screens out the electric field at high altitudes. On the contrary, if the sufficiently large Qh_Q is produced by a weak return stroke (i.e., a dim halo) accompanied by intense continuing current, the lightning-induced electric field at high altitudes persists at a level that is comparable to E_k, and therefore an extensive upper diffuse region can develop. Furthermore, we demonstrate that 'negative sprites' (produced by -CGs) should be necessarily carrot sprites and most likely accompanied by a detectable halo, since the initiation of upward positive streamers is always easier than that of downward negative streamers, and -CGs are usually associated with impulsive return stroke with no continuing current. We also conjecture that in some cases, fast decaying single-headed upward positive streamers produced by -CGs may appear as bright spots/patches. We show that the threshold charge moment changes of positive and negative sprites are, respectively, ~320 and ~500 C km under typical nighttime conditions assumed in this study. These different initiation thresholds, along with the different applied electric field required for stable propagation of positive and negative streamers and the fact that +CGs much more frequently produce large charge moment changes, represent three major factors in the polarity asymmetry of +CGs and -CGs in producing sprite streamers. We further demonstrate that lower mesospheric ambient conductivity leads to smaller threshold charge moment change required for the production of carrot sprites. We suggest that geographical and temporal conductivity variations in the lower ionosphere documented in earlier studies, along with the seasonal and inter-annual variations of thunderstorm activity that lead to different lightning characteristics in the troposphere, account for the different morphological features of sprites observed in different observation campaigns. Key PointsLightning characteristics and sprite morphology are closely relatedUpper atmospheric ambient conditions significantly affect sprite morphologyNegative sprites are necessarily carrot sprites produced by large charge moment
机译:胡萝卜精灵,表现出向上和向下传播飘带,圆柱形的精灵,主要特点是垂直的向下的飘带,代表两种截然不同的形态类lightning-driven瞬态发光的事件上的气氛。云地闪电放电(+ CGs)与快感瞬间变化(Qh_Q)倾向于生产胡萝卜的精灵中间层的地区电场超过0.8 e_k和价值持续> ~ 2毫秒,而有关小Qh _Q只能够生产圆柱形的精灵。出现在精灵的外围光晕由研究生院理事会+与大型Qh_Q有关。足够大的Qh_Q,动态的Qh_Q决定了特定形状的胡萝卜精灵。Qh_Q生产主要由一个冲动的回报中风、强电场产生高海拔和表现为明亮的光环,相应的导电性增强降低或提高拖缆的概率启动内部/雪碧光环之下。冲动的回击导致更多重要的(也就是说,导电性增强明亮的光环)。也会导致快速衰减和终止上分散地区的胡萝卜精灵因为它有效电场在屏幕高海拔地区。足够大的Qh_Q是由弱回程(也就是说,暗淡的光晕)陪同强烈的持续的电流,前往电场在高海拔地区依然存在E_k水平相当,因此一个广泛上扩散区域可以开发。此外,我们证明“负面精灵”(由研究生院理事会)应该是必然胡萝卜精灵和最有可能伴随着可检测的光环,因为向上的起始积极的飘带总是容易的下行-飘带,研究生院理事会通常与冲动回程没有关联持续的电流。某些情况下,单头向上衰减快积极的飘带由研究生院理事会可能出现亮点/补丁。负责积极和消极的变化精灵,分别~ 320 ~ 500 C公里在典型的夜间条件下承担本研究。阈值,以及不同的应用稳定传播所需的电场积极的和消极的飘带,这一事实研究生院理事会+更频繁地产生快感时刻变化,代表三个主要因素+研究生院理事会和cg的极性不对称生产雪碧飘带。表明低中间层的环境电导率导致较小的阈值时刻改变的生产所需胡萝卜精灵。颞电导率较低的变化电离层记录在早先的研究中,的季节和年际变化雷暴活动导致不同闪电特征在对流层,占不同的形态学特征精灵中观察到不同的观察运动。和雪碧形态紧密relatedUpper大气环境条件显著影响雪碧morphologyNegative精灵一定胡萝卜生产的精灵充电的时刻

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