N–C–Ar–He Isotopic Systematics of Quenched Tholeiitic Glasses from the Bouvet Triple Junction Area
Author:
Publisher
Pleiades Publishing Ltd
Subject
Geochemistry and Petrology,Geophysics
Link
http://link.springer.com/content/pdf/10.1134/S0016702918130037.pdf
Reference36 articles.
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3. A. I. Buikin, M. Trieloff, E. V. Korochantseva, J. Hopp, M. Kaliwoda, H.-P. Meyer, and R. Altherr, “Distribution of mantle and atmospheric argon in mantle xenoliths from the Western Arabian Peninsula: constraints on timing and composition of metasomatizing agents in the lithospheric mantle,” J. Petrol. 51, 2547–2570 (2010).
4. A. I. Buikin, A. B. Verchovsky, V. A. Grinenko, S. A. Silantyev, V. S. Sevast’yanov, Yu. A. Nevinnyi, and E. P. Smirnova, “C, N, He, and Ar isotope and element ratios in fluid inclusions from MORB chilled glasses: stepwise crushing data,” Geochem. Int. 51 (4), 338–343 (2013).
5. A. I. Buikin, I. P. Solovova, A. B. Verchovsky, L. N. Kogarko, and A. A. Averin, “PVT parameters of fluid inclusions and the C, O, N, and Ar isotopic composition in a garnet lherzolite xenolith from the Oasis Jetty, East Antarctica,” Geochem. Int. 52 (10) 805–821 (2014).
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3. An isotope ratio mass spectrometry‐based method for hydrogen isotopic analysis in sub‐microliter volumes of water: Application for multi‐isotope investigations of gases extracted from fluid inclusions;Rapid Communications in Mass Spectrometry;2020-09-15
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