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A challenge for martian lightning: Limits of collisional charging at low pressure

机译:Martian Lightning挑战:低压碰撞充电的限制

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Collisional charging is one potential initial step in generating lightning. In this work, we study the charging of colliding monodisperse, spherical basalt grains depending on ambient pressure. We used grains of 1.0 to 1.2 mm in one set and 2.0 to 2.4 mm in another set. We varied the ambient pressure between 0.03 mbar and 80 mbar. This especially includes Martian pressure being 6 mbar on average. At a few mbar the net charge gathering on colliding grains has a minimum. A smooth incline in charging occurs for larger pressures. Toward lower pressure the charge increases steeply. The pressure dependence is in agreement to a model where the maximum charge is limited by a gas discharge occurring between two charged colliding grains shortly after or before a collision. The capability of building up charge is at a minimum exactly in the range of Martian pressures. The charges on grains are at least a factor 5 smaller than at the highest pressure tested and still smaller compared to ambient pressure on Earth. This implies that on Mars collisional charging and the potential of subsequent generation of lightning or other large scale discharges are strongly reduced compared to Earth. This might result in less frequent and less energetic lightning on Mars.
机译:碰撞充电是发电闪电的一个潜在的初始步骤。在这项工作中,我们研究了根据环境压力的碰撞单分散的球形玄武岩颗粒的充电。我们在一个组中使用1.0至1.2毫米的谷物,另一组中的2.0至2.4毫米。我们在0.03毫巴和80毫巴之间变化了环境压力。这尤其包括平均的火星压力为6毫巴。在几毫巴的几毫巴上,碰撞谷物上的净电荷收集最小。充电时的平滑倾斜度发生在更大的压力中。朝向较低压力,电荷急剧增加。压力依赖性是一致的模型,其中最大电荷受到在碰撞之后或之前的两个带电碰撞颗粒之间发生的气体放电的限制。建立收费的能力在火星压力范围内最低。晶粒的电荷至少比在测试的最高压力下比在最高压力下进行的因子5,而与地球上的环境压力相比仍然较小。这意味着与地球相比,在火星碰撞和随后产生避雷或其他大规模放电的潜力的局部充电。这可能导致火星上越来越少,充满活力的闪电。

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