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Eruption of the Continental Flood Basalts at -259 Ma in the Emeishan Large Igneous Province, SW China: Evidence from Laser Microprobe ^(40)Ar/^(39)Ar Dating 被引量:15
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作者 HOU Zengqian CHEN Wen LU Jiren 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2006年第4期514-521,共8页
A suite of continental flood basalts sampled over a vast exposure and stratigraphic thickness in the Emeishan large igneous province (LIP), SW China was investigated for laser microprobe ^40Ar/^39Ar dating. There ar... A suite of continental flood basalts sampled over a vast exposure and stratigraphic thickness in the Emeishan large igneous province (LIP), SW China was investigated for laser microprobe ^40Ar/^39Ar dating. There are two ^40Ar/^39Ar age groups for these basalts, corresponding to 259-246 Ma and 177-137 Ma, respectively. A well-defined isochron gives an eruption age of huge quantities of mafic magmas at 258.9±3.4 Ma, which is identical to previous dating and paleontological data. Much younger ^40Ar/^39Ar ages for some basalts with Iow-greenschist metamorphic facies probably recorded a late thermo-tectonic event caused by collision between the Yangtze and Qiangtang continental blocks during the Mesozoic, which resulted in the reset of argon isotope system. The ^40Ar/^39Ar age data, we present here, combined with previous dating and paleontological data, suggest relatively short duration (about 3 Ma) of mafic volcanism, which have important implication on mantle plume genesis of the Emeishan continental flood basalts in the LIP. 展开更多
关键词 laser microprobe ^40Ar/^39Ar age continental flood basalts EMEISHAN large igneous province
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Some Aspects in Application of Microscopical and Microanalytical Techniques
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作者 沙维 《Rare Metals》 SCIE EI CAS CSCD 1994年第3期201-206,共6页
This article considers collectively some of the most recent advances in the application of microscopicaland microanalytical techniques in materials science. including studies concerning rare metals. These comprise the... This article considers collectively some of the most recent advances in the application of microscopicaland microanalytical techniques in materials science. including studies concerning rare metals. These comprise the highest resolution obtained with electron microscopy. observation of moire patterns in transmisionelectron microscopy (TEM), electro-dimpling before ion beam thinning as an effective step in the preparation of TEM samples, hydrogen problem in atom probe analysis, and a novel analysis technique-lasermicroprobe mass spectrometry (LAMMS). 展开更多
关键词 HREM Moire pattern Dimpling Atom probe laser microprobe
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