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Prolonged magmatic activity on Mars inferred from the detection of felsic rocks

机译:从长英质岩石的探测推断出火星上岩浆活动的延长

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Rocks dominated by the silicate minerals quartz and feldspar are abundant in Earth's upper continental crust. Yet felsic rocks have not been widely identified on Mars, a planet that seems to lack plate tectonics and the associated magmatic processes that can produce evolved siliceous melts on Earth. If Mars once had a feldspar-rich crust that crystallized from an early magma ocean such as that on the Moon, erosion, sedimentation and volcanism have erased any clear surface evidence for widespread felsic materials. Here we report near-infrared spectral evidence from the Compact Reconnaissance Imaging Spectrometer for Mars onboard the Mars Reconnaissance Orbiter for felsic rocks in three geographically disparate locations on Mars. Spectral characteristics resemble those of feldspar-rich lunar anorthosites, but are accompanied by secondary alteration products (clay minerals). Thermodynamic phase equilibrium calculations demonstrate that fractional crystallization of magma compositionally similar to volcanic flows near one of the detection sites can yield residual melts with compositions consistent with our observations. In addition to an origin by significant magma evolution, the presence of felsic materials could also be explained by feldspar enrichment by fluvial weathering processes. Our finding of felsic materials in several locations on Mars suggests that similar observations by the Curiosity rover in Gale crater may be more widely applicable across the planet.
机译:在上地壳中富含硅酸盐矿物石英和长石的岩石。然而,长丝岩石尚未在火星上得到广泛识别,这种行星似乎缺乏板块构造和相关的岩浆作用,可以在地球上产生演化的硅质熔体。如果火星曾经有一个富含长石的地壳,该地壳是从早期的岩浆海洋(如月球上的结晶)中结晶出来的,那么侵蚀,沉积和火山作用就消除了广泛的长英质物质的任何明显表面证据。在这里,我们报道了火星小型侦察成像光谱仪在火星侦察轨道器上的三个远距遥远的长石岩石上的近红外光谱证据。光谱特征类似于富含长石的月钙钙长石,但伴有二次蚀变产物(粘土矿物)。热力学相平衡计算表明,在一个探测点附近的岩浆组分结晶类似于火山流,可产生残余熔体,其成分与我们的观察一致。除了通过显着的岩浆演化而起源外,长英质物质的存在还可以通过河流风化作用的长石富集来解释。我们在火星上几个位置发现的长英质物质表明,盖尔陨石坑中好奇号火星车的类似观测可能在整个星球上得到更广泛的应用。

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