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Success of sky-polarimetric Viking navigation: revealing the chance Viking sailors could reach Greenland from Norway

机译:天空极化维京人导航的成功:揭示维京水手有可能从挪威到达格陵兰的机会

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摘要

According to a famous hypothesis, Viking sailors could navigate along the latitude between Norway and Greenland by means of sky polarization in cloudy weather using a sun compass and sunstone crystals. Using data measured in earlier atmospheric optical and psychophysical experiments, here we determine the success rate of this sky-polarimetric Viking navigation. Simulating 1000 voyages between Norway and Greenland with varying cloudiness at summer solstice and spring equinox, we revealed the chance with which Viking sailors could reach Greenland under the varying weather conditions of a 3-week-long journey as a function of the navigation periodicity Δt if they analysed sky polarization with calcite, cordierite or tourmaline sunstones. Examples of voyage routes are also presented. Our results show that the sky-polarimetric navigation is surprisingly successful on both days of the spring equinox and summer solstice even under cloudy conditions if the navigator determined the north direction periodically at least once in every 3 h, independently of the type of sunstone used for the analysis of sky polarization. This explains why the Vikings could rule the Atlantic Ocean for 300 years and could reach North America without a magnetic compass. Our findings suggest that it is not only the navigation periodicity in itself that is important for higher navigation success rates, but also the distribution of times when the navigation procedure carried out is as symmetrical as possible with respect to the time point of real noon.
机译:根据一个著名的假设,维京水手可以在多云的天气中使用太阳罗盘和太阳石晶体,通过天空极化在挪威和格陵兰之间的纬度上航行。使用早期大气光学和心理物理实验中测得的数据,此处我们确定了这种天空极化的维京导航的成功率。通过模拟夏至和春分时在多云的挪威和格陵兰岛之间航行1000次航行,我们揭示了维京水手有机会在3周旅程的不同天气条件下到达格陵兰岛,这是航行周期Δt的函数,如果他们用方解石,堇青石或电气石太阳石分析了天空极化。还提供了航路示例。我们的结果表明,即使在多云的条件下,如果导航仪每隔3h至少周期性地确定一次北向,则无论在春分还是夏至的两天,天空极化导航都非常成功,而与使用的太阳石类型无关天空极化的分析。这解释了为什么维京人可以统治大西洋300年,并且可以在没有电磁罗盘的情况下到达北美。我们的发现表明,对于更高的导航成功率而言,不仅导航周期性本身很重要,而且导航过程相对于真实正午的时间点尽可能对称的时间分布也很重要。

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