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Regional stratigraphy of the south polar layered deposits (Promethei Lingula, Mars): “Discontinuity-bounded” units in images and radargrams

机译:南极分层沉积物的区域地层(Promethei Lingula,Mars):“不连续性有限”的图像和雷达格

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摘要

The Mars South Polar Layered Deposits (SPLD) are the result of depositional and erosional events, which are marked by different stratigraphic sequences and erosional surfaces. To unambiguously define the stratigraphic units at regional scale, we mapped the SPLD on the basis of observed discontinuities (i.e., unconformities, correlative discontinuities and conformities), as commonly done in terrestrial modern stratigraphy. This methodology is defined as “Discontinuity-Bounded Units” or allostratigraphy, and is complemented by geomorphological mapping. Our study focuses on Promethei Lingula (PL) and uses both high-resolution images (CTX, HiRISE) and radargrams (SHARAD) to combine surface and sub-surface observations and obtain a 3D geological reconstruction of the SPLD. One regional discontinuity (named AUR1) was defined within the studied stratigraphic succession and is exposed in several non-contiguous outcrops around PL as well as observed at depth within the ice sheet. This is the primary contact between two major depositional sequences, showing a different texture at CTX resolution. The lower sequence is characterized mainly by a “ridge and trough” morphology (Ridge and Trough Sequence; RTS) and the upper sequence shows mainly by a “stair-stepped” morphology (Stair-Stepped Sequence; SSS). On the basis of the observations, we defined two regional “discontinuity-bounded” units in PL, respectively coinciding with RTS and SSS sequences. Our stratigraphic reconstruction provides new hints on the major scale events that shaped this region. Oscillations in Martian axial obliquity could have controlled local climate conditions in the past, affecting the PL geological record.
机译:火星南极分层存款(SPLD)是沉积和侵蚀的事件,这是由不同地层序列和侵蚀的表面标记的结果。为了明确德音响NE区域尺度的地层单元,我们观察到的映射的不连续性(即,不整合面,相关的不连续性和不合格)的基础上的SPLD,陆地现代地层中通常进行。这种方法是定义为“不连续有界单位”或allostratigraphy德网络连接,并且被地貌测绘补充。我们的研究着重于Promethei海豆芽(PL),并使用了高清晰度图像(CTX,的HiRISE)和radargrams(SHARAD)相结合的表面和近地面观测并获得SPLD的三维地质重建。一个区域的不连续性(名为AUR1)为德音响定义所研究的地层内继承和以及冰片内的深度观察周围PL几个不连续的露头露出。这是两个主要沉积序列之间的主要接触,示出了在CTX分辨率不同的纹理。下部序列的特征在于主要由“脊部和谷”形态(脊部和谷序列; RTS)和上部序列示出主要由“阶梯状”形态(阶梯状序列; SSS)。在观察的基础上,我们去网络PL定义两个区域“不连续有界”单位,分别与RTS和SSS序列一致。我们的地层重建提供了有关这型地区的主要尺度事件新线索。在火星的倾角轴向振动可能已经控制了当地的气候条件,在过去,影响了PL地质记录。

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