Academic literature on the topic 'Zircon Helium'
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Journal articles on the topic "Zircon Helium"
Nasdala, Lutz, Dieter Grambole, Jens Götze, Ulf Kempe, and Tamás Váczi. "Helium irradiation study on zircon." Contributions to Mineralogy and Petrology 161, no. 5 (August 5, 2010): 777–89. http://dx.doi.org/10.1007/s00410-010-0562-7.
Full textYu, Shun, Wen Chen, Jingbo Sun, and Ze Shen. "Diffusion of helium in FCT zircon." Science China Earth Sciences 62, no. 4 (February 25, 2019): 719–32. http://dx.doi.org/10.1007/s11430-017-9283-3.
Full textBabsail, L., N. Hamelin, and P. D. Townsend. "Helium-ion implanted waveguides in zircon." Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 59-60 (July 1991): 1219–22. http://dx.doi.org/10.1016/0168-583x(91)95797-h.
Full textCherniak, D. J., E. B. Watson, and J. B. Thomas. "Diffusion of helium in zircon and apatite." Chemical Geology 268, no. 1-2 (October 2009): 155–66. http://dx.doi.org/10.1016/j.chemgeo.2009.08.011.
Full textCherniak, D. J. "Diffusion of helium in radiation-damaged zircon." Chemical Geology 529 (December 2019): 119308. http://dx.doi.org/10.1016/j.chemgeo.2019.119308.
Full textReich, Martin, Rodney C. Ewing, Todd A. Ehlers, and Udo Becker. "Low-temperature anisotropic diffusion of helium in zircon: Implications for zircon (U–Th)/He thermochronometry." Geochimica et Cosmochimica Acta 71, no. 12 (June 2007): 3119–30. http://dx.doi.org/10.1016/j.gca.2007.03.033.
Full textKelly, Colter J., Daniel E. Harlov, David A. Schneider, Simon E. Jackson, and Renelle Dubosq. "Experimental fluid-mediated alteration of zircon under lower greenschist facies conditions." Canadian Mineralogist 58, no. 2 (March 1, 2020): 247–65. http://dx.doi.org/10.3749/canmin.1900041.
Full textGuenthner, W. R., P. W. Reiners, R. A. Ketcham, L. Nasdala, and G. Giester. "Helium diffusion in natural zircon: Radiation damage, anisotropy, and the interpretation of zircon (U-Th)/He thermochronology." American Journal of Science 313, no. 3 (March 1, 2013): 145–98. http://dx.doi.org/10.2475/03.2013.01.
Full textCan, N., and P. D. Townsend. "Anomalous annealing of zircon optical waveguides formed by implantation of helium ions." Radiation Effects and Defects in Solids 128, no. 3 (April 1994): 215–20. http://dx.doi.org/10.1080/10420159408219760.
Full textGautheron, Cécile, Rosella Pinna-Jamme, Alexis Derycke, Floriane Ahadi, Caroline Sanchez, Frédéric Haurine, Gael Monvoisin, et al. "Technical note: Analytical protocols and performance for apatite and zircon (U–Th) ∕ He analysis on quadrupole and magnetic sector mass spectrometer systems between 2007 and 2020." Geochronology 3, no. 1 (June 1, 2021): 351–70. http://dx.doi.org/10.5194/gchron-3-351-2021.
Full textDissertations / Theses on the topic "Zircon Helium"
"Radiation Damage and Helium Diffusion in Mineral Chronometers." Doctoral diss., 2019. http://hdl.handle.net/2286/R.I.54822.
Full textDissertation/Thesis
Doctoral Dissertation Geological Sciences 2019
Trenouth, C. W. "An insight into the lowtemperature thermal evolution of the covered eastern Gawler Craton margin: the Stuart Shelf basement." Thesis, 2015. http://hdl.handle.net/2440/118240.
Full textMulti-method thermochronology applied to the eastern Gawler Craton, beneath the Stuart Shelf cover (Olympic Dam Domain, South Australia), reveals multiple episodes of exhumation. Modelled data from Apatite Fission Track (AFT) analysis identifies four time periods where the eastern Gawler Craton basement experienced cooling into AFT closure temperatures (~60-120°C); at1050 ± 55 Ma (Mesoproterozoic), 439 ± 14 Ma (late Ordovician-Silurian), 304 ±36 Ma (mid-Carboniferous-mid Permian) and 245 ± 52 Ma (late Permian-early Jurassic). In addition, the Carboniferous and Jurassic peaks are supported by zircon (ZHe) and apatite (AHe) (U-Th-Sm)/ He results. The Ordovician peak is interpreted as resulting from the final pulses of the Delamerian Orogeny partially, mixed with the first pulses of the Alice Springs Orogeny. The Carboniferous-Permian event is linked with widespread exhumation likely due to the final pulses of the Alice Springs Orogeny (~300Ma). The preserved Mesoproterozoic event presents new AFT data in the area and coincides with some recent studies. However, it occurs only in samples obtained from the Gawler Range Volcanics and more prominent in core depth shallower than 500m. The late Permian-early Jurassic event is comparable to events believed have to stemmed from hydrothermal events. This event compliments AFT studies in the northern Flinders Ranges. The Late Ordovician-Silurian and Carboniferous-early Permian AFT pulses confirm events seen in studies of surrounding regions. Other geochronological studies around the Olympic Dam area indicate that this pulse either results from a localised hydrothermal event or distal effects of the Musgravian Orogeny. The Jurassic event suggests that the hydrothermal effect on AFT ages may be a more widespread event and not just localised to the northern Flinders Ranges as previously thought. The Ordovician event represents mixing between Delamerian and Alice Springs Orogenies. The Carboniferous-Permian event represents late distal effects of the Alice Springs Orogeny. These events match those of surrounding regions.
Thesis (B.Sc.(Hons)) -- University of Adelaide, School of Physical Sciences, 2015
Books on the topic "Zircon Helium"
Damen, Patricia Maria Gerardina. Helium and fission gas behaviour in magnesium aluminate spinel and zirconia for actinide transmutation. Delft, The Netherlands: DUP Science, 2003.
Find full textDamen, Patricia. Helium & Fission Gas Behavior in Magnesium Aluminate Spinel & Zirconia for Actinide Transmutation. Delft Univ Pr, 2003.
Find full textConference papers on the topic "Zircon Helium"
Goldsmith, Adam S., Daniel F. Stockli, and Richard A. Ketcham. "MECHANISMS OF HELIUM DIFFUSION FROM ZIRCON, AND THE TRANSITION TO THE METAMICT STATE." In GSA Annual Meeting in Denver, Colorado, USA - 2016. Geological Society of America, 2016. http://dx.doi.org/10.1130/abs/2016am-287825.
Full textRoss, Catherine, Daniel F. Stockli, Timmons Erickson, Desmond B. Patterson, and Sean P. S. Gulick. "ZIRCON (U-TH)/HE IMPACT CRATER THERMOCHRONOMETRY AND THE EFFECTS OF SHOCK MICROSTRUCTURES ON HELIUM DIFFUSION KINETICS." In GSA 2020 Connects Online. Geological Society of America, 2020. http://dx.doi.org/10.1130/abs/2020am-357530.
Full textRohan, P., P. Chraska, P. Ctibor, and K. Neufuss. "Relation Between Thermal Expansion Coefficient and Porosity in Thick Zircon and Alumina Coatings." In ITSC 2000, edited by Christopher C. Berndt. ASM International, 2000. http://dx.doi.org/10.31399/asm.cp.itsc2000p1067.
Full textChen, D., J. Colmenares-Angulo, R. Molz, C. Dambra, and D. Hawley. "Helium-Free Parameter Development for TriplexPro-210 Plasma Gun." In ITSC2011, edited by B. R. Marple, A. Agarwal, M. M. Hyland, Y. C. Lau, C. J. Li, R. S. Lima, and A. McDonald. DVS Media GmbH, 2011. http://dx.doi.org/10.31399/asm.cp.itsc2011p0627.
Full textZhang, C., C. J. Li, C. X. Li, W. Gao, M. Planche, H. Liao, and C. Coddet. "Effect of In-Flight Particle Velocity on the Performance of APS YSZ Electrolyte." In ITSC2007, edited by B. R. Marple, M. M. Hyland, Y. C. Lau, C. J. Li, R. S. Lima, and G. Montavon. ASM International, 2007. http://dx.doi.org/10.31399/asm.cp.itsc2007p0711.
Full textMartinez, Oscar, and Christopher Blessinger. "ORNL Special Form Testing of Sealed-Source Encapsulations." In ASME 2015 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/pvp2015-46003.
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