Abstract A high-resolution paleosecular variation record from Black Sea sediments indicating fast directional changes associated with low field intensities during marine isotope stage (MIS) 4
首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >A high-resolution paleosecular variation record from Black Sea sediments indicating fast directional changes associated with low field intensities during marine isotope stage (MIS) 4
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A high-resolution paleosecular variation record from Black Sea sediments indicating fast directional changes associated with low field intensities during marine isotope stage (MIS) 4

机译:来自黑海沉积物的高分辨率古分子变异记录,表明海洋同位素阶段(MIS)4期间与低场强度相关的快速定向变化

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AbstractA total of nine sediment cores recovered from the Archangelsky Ridge in the SE Black Sea were systematically subjected to intense paleo- and mineral magnetic analyses. Besides 16 accelerator mass spectrometry (AMS)14C ages available for another core from this area, dating was accomplished by correlation of short-term warming events during the last glacial monitored by high-resolution X-ray fluorescence (XRF) scanning as maxima in both Ca/Ti and K/Ti ratios in Black Sea sediments to the so-called ‘Dansgaard–Oeschger events’ recognized from Greenland ice cores. Thus, several hiatuses could be identified in the various cores during the last glacial/interglacial cycle. Finally, core sections documenting marine isotope stage (MIS) 4 at high resolution back to 69 ka were selected for detailed analyses. At 64.5 ka, according to obtained results from Black Sea sediments, the second deepest minimum in relative paleointensity during the past 69 ka occurred, with the Laschamp geomagnetic excursion at 41 ka being associated with the lowest field intensities. The field minimum during MIS 4 is associated with large declination swings beginning about 3 ka before the minimum. While a swing to 50°E is associated with steep inclinations (50–60°) according to the coring site at 42°N, the subsequent declination swing to 30°W is associated with shallow inclinations of down to 40°. Nevertheless, these large deviations from the direction of a geocentric axial dipole field (I=61°
机译:<![cdata [ Abstract 在SE黑海的Archangelsky Ridge中恢复的总共有9个沉积物核心被系统地受到强烈的古和矿物磁性分析。除了16加速器质谱(AMS) 14> 14 C年龄可用于来自该地区的另一个核心,约会通过在最后冰川期间的短期变暖事件相关来实现通过高分辨率X射线荧光(XRF)扫描作为Maxima,在黑海沉积物中的CA / TI和K / Ti比率,到从格陵兰冰核认可的所谓的“Dansgaard-Oeschger事件”。因此,在最后的冰川/中间峡循环期间可以在各种核中识别几个中断。最后,在高分辨率下记录海洋同位素阶段(MIS)4的核心部分被选中回到69ka进行详细分析。根据64.5 ka,根据黑海沉积物的获得结果,在过去的69 ka中相对大部分的第二最小最小,Laschamp Geomagnetic偏移在41 ka与最低场强度相关。在MIS 4期间的字段最小与大约3 ka之前的大倾斜摇摆相关联。虽然在42°N下的嵌管部位与陡峭的倾斜(50-60°)与陡峭倾斜(50-60°)相关联,但随后的倾斜摆动至30°W与下至40°的浅倾斜相关。然而,这些大偏离来自地区轴向偶极场的方向( i = 61 °

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