Vaughan-Hammon Joshua D, Luisier Cindy, Baumgartner Lukas P, Schmalholz Stefan M
Institute of Earth Sciences, University of Lausanne, 1015 Lausanne, Switzerland.
CNRS, Géosciences Rennes UMR 6118, University of Rennes, Rennes, France.
Swiss J Geosci. 2021;114(1):20. doi: 10.1186/s00015-021-00397-3. Epub 2021 Oct 29.
The Monte Rosa nappe consists of a wide range of lithologies that record conditions associated with peak Alpine metamorphism. While peak temperature conditions inferred from previous studies largely agree, variable peak pressures have been estimated for the Alpine high-pressure metamorphic event. Small volumes of whiteschist lithologies with the assemblage chloritoid + phengite + talc + quartz record peak pressures up to 0.6 GPa higher compared to associated metapelitic and metagranitic lithologies, which yield a peak pressure of ca. 1.6 GPa. The reason for this pressure difference is disputed, and proposed explanations include tectonic mixing of rocks from different burial depths (mélange) or local deviations of the pressure from the lithostatic value caused by heterogeneous stress conditions between rocks of contrasting mechanical properties. We present results of detailed field mapping, structural analysis and a new geological map for a part of the Monte Rosa nappe exposed at the cirque du Véraz field area (head of the Ayas valley, Italy). Results of the geological mapping and structural analysis shows the structural coherency within the western portions of the Monte Rosa nappe. This structural coherency falsifies the hypothesis of a tectonic mélange as reason for peak pressure variations. Structural analysis indicates two major Alpine deformation events, in agreement with earlier studies: (1) north-directed nappe emplacement, and (2) south-directed backfolding. We also analyze a newly discovered whiteschist body, which is located at the intrusive contact between Monte Rosa metagranite and surrounding metapelites. This location is different to previous whiteschist occurrences, which were entirely embedded within metagranite. Thermodynamic calculations using metamorphic assemblage diagrams resulted in 2.1 ± 0.2 GPa and 560 ± 20 °C for peak Alpine metamorphic conditions. These results agree with metamorphic conditions inferred for previously investigated nearby whiteschist outcrops embedded in metagranite. The new results, hence, confirm the peak pressure differences between whiteschists and the metagranite and metapelite. To better constrain the prograde pressure-temperature history of the whiteschist, we compare measured Mg zoning in chloritoid with Mg zoning predicted by fractional crystallization pseudo-section modelling for several hypothetical pressure-temperature paths. In order to reach a ca. 0.6 GPa higher peak pressure compared to the metapelite and metagranite, our results suggest that the whiteschist likely deviated from the prograde burial path recorded in metapelite and metagranite lithologies. However, the exact conditions at which the whiteschist pressure deviated are still contentious due to the strong temperature dependency of Mg partitioning in whiteschist assemblages. Our pseudo-section results suggest at least that there was no dramatic isothermal pressure increase recorded in the whiteschist.
罗莎峰推覆体由多种岩性组成,这些岩性记录了与阿尔卑斯造山运动高峰期相关的条件。虽然先前研究推断的峰值温度条件基本一致,但对于阿尔卑斯高压变质事件,已估算出不同的峰值压力。少量具有绿泥石 + 多硅白云母 + 滑石 + 石英组合的白片岩岩性记录的峰值压力比相关的变质泥质岩和变质花岗岩岩性高出0.6吉帕,后者的峰值压力约为1.6吉帕。这种压力差异的原因存在争议,提出的解释包括来自不同埋藏深度岩石的构造混合(混杂岩),或由力学性质不同的岩石之间的非均一应力条件导致的压力相对于岩石静压力值的局部偏差。我们展示了在韦拉兹冰川场区(意大利阿亚斯河谷源头)出露的罗莎峰推覆体一部分的详细野外填图、构造分析结果以及一幅新的地质图。地质填图和构造分析结果表明罗莎峰推覆体西部各部分具有构造连贯性。这种构造连贯性证伪了将构造混杂岩作为峰值压力变化原因的假说。构造分析表明存在两次主要的阿尔卑斯变形事件,这与早期研究一致:(1)向北的推覆体就位,以及(2)向南的背褶皱作用。我们还分析了一个新发现的白片岩体,它位于罗莎峰变质花岗岩与周围变质泥质岩的侵入接触带。这个位置与之前完全嵌入变质花岗岩中的白片岩出露情况不同。利用变质矿物组合相图进行的热力学计算得出阿尔卑斯造山运动高峰期的峰值条件为2.1±0.2吉帕和560±20℃。这些结果与之前对嵌入变质花岗岩中的附近白片岩露头推断的变质条件一致。因此,新结果证实了白片岩与变质花岗岩和变质泥质岩之间的峰值压力差异。为了更好地限制白片岩的进变质压力 - 温度历史,我们将测得的绿泥石中的镁分带与通过分数结晶假剖面模型对几种假设的压力 - 温度路径预测的镁分带进行了比较。为了比变质泥质岩和变质花岗岩达到约0.6吉帕更高的峰值压力,我们的结果表明白片岩可能偏离了变质泥质岩和变质花岗岩岩性中记录的进变质埋藏路径。然而,由于白片岩矿物组合中镁分配强烈依赖温度,白片岩压力偏离的确切条件仍存在争议。我们的假剖面结果至少表明白片岩中没有记录到显著的等温压力增加。