17.5: References and Further Reading
- Page ID
- 22743
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\(\newcommand{\avec}{\mathbf a}\) \(\newcommand{\bvec}{\mathbf b}\) \(\newcommand{\cvec}{\mathbf c}\) \(\newcommand{\dvec}{\mathbf d}\) \(\newcommand{\dtil}{\widetilde{\mathbf d}}\) \(\newcommand{\evec}{\mathbf e}\) \(\newcommand{\fvec}{\mathbf f}\) \(\newcommand{\nvec}{\mathbf n}\) \(\newcommand{\pvec}{\mathbf p}\) \(\newcommand{\qvec}{\mathbf q}\) \(\newcommand{\svec}{\mathbf s}\) \(\newcommand{\tvec}{\mathbf t}\) \(\newcommand{\uvec}{\mathbf u}\) \(\newcommand{\vvec}{\mathbf v}\) \(\newcommand{\wvec}{\mathbf w}\) \(\newcommand{\xvec}{\mathbf x}\) \(\newcommand{\yvec}{\mathbf y}\) \(\newcommand{\zvec}{\mathbf z}\) \(\newcommand{\rvec}{\mathbf r}\) \(\newcommand{\mvec}{\mathbf m}\) \(\newcommand{\zerovec}{\mathbf 0}\) \(\newcommand{\onevec}{\mathbf 1}\) \(\newcommand{\real}{\mathbb R}\) \(\newcommand{\twovec}[2]{\left[\begin{array}{r}#1 \\ #2 \end{array}\right]}\) \(\newcommand{\ctwovec}[2]{\left[\begin{array}{c}#1 \\ #2 \end{array}\right]}\) \(\newcommand{\threevec}[3]{\left[\begin{array}{r}#1 \\ #2 \\ #3 \end{array}\right]}\) \(\newcommand{\cthreevec}[3]{\left[\begin{array}{c}#1 \\ #2 \\ #3 \end{array}\right]}\) \(\newcommand{\fourvec}[4]{\left[\begin{array}{r}#1 \\ #2 \\ #3 \\ #4 \end{array}\right]}\) \(\newcommand{\cfourvec}[4]{\left[\begin{array}{c}#1 \\ #2 \\ #3 \\ #4 \end{array}\right]}\) \(\newcommand{\fivevec}[5]{\left[\begin{array}{r}#1 \\ #2 \\ #3 \\ #4 \\ #5 \\ \end{array}\right]}\) \(\newcommand{\cfivevec}[5]{\left[\begin{array}{c}#1 \\ #2 \\ #3 \\ #4 \\ #5 \\ \end{array}\right]}\) \(\newcommand{\mattwo}[4]{\left[\begin{array}{rr}#1 \amp #2 \\ #3 \amp #4 \\ \end{array}\right]}\) \(\newcommand{\laspan}[1]{\text{Span}\{#1\}}\) \(\newcommand{\bcal}{\cal B}\) \(\newcommand{\ccal}{\cal C}\) \(\newcommand{\scal}{\cal S}\) \(\newcommand{\wcal}{\cal W}\) \(\newcommand{\ecal}{\cal E}\) \(\newcommand{\coords}[2]{\left\{#1\right\}_{#2}}\) \(\newcommand{\gray}[1]{\color{gray}{#1}}\) \(\newcommand{\lgray}[1]{\color{lightgray}{#1}}\) \(\newcommand{\rank}{\operatorname{rank}}\) \(\newcommand{\row}{\text{Row}}\) \(\newcommand{\col}{\text{Col}}\) \(\renewcommand{\row}{\text{Row}}\) \(\newcommand{\nul}{\text{Nul}}\) \(\newcommand{\var}{\text{Var}}\) \(\newcommand{\corr}{\text{corr}}\) \(\newcommand{\len}[1]{\left|#1\right|}\) \(\newcommand{\bbar}{\overline{\bvec}}\) \(\newcommand{\bhat}{\widehat{\bvec}}\) \(\newcommand{\bperp}{\bvec^\perp}\) \(\newcommand{\xhat}{\widehat{\xvec}}\) \(\newcommand{\vhat}{\widehat{\vvec}}\) \(\newcommand{\uhat}{\widehat{\uvec}}\) \(\newcommand{\what}{\widehat{\wvec}}\) \(\newcommand{\Sighat}{\widehat{\Sigma}}\) \(\newcommand{\lt}{<}\) \(\newcommand{\gt}{>}\) \(\newcommand{\amp}{&}\) \(\definecolor{fillinmathshade}{gray}{0.9}\)[1] Amelin, U. (2018) Early Solar System Materials, Processes, and Chronology. In: Van Kranendonk, M and Bennett, V and Hoffmann, E, (eds.) Earth’s Oldest Rocks. (pp. 3-26). Elsevier: Amsterdam, Netherlands.
[2] Caro, G. (2011) Early Silicate Earth Differentiation. Annual Review of Earth and Planetary Sciences 2011 39:1, 31-58. https://doi.org/10.1146/annurev-earth-040610-133400
[3] Cavosie, A; Valley, J; Wilde, S; (2018) The Oldest Terrestrial Mineral Record: Thirty Years of Research on Hadean Zircon From Jack Hills, Western Australia. In: Van Kranendonk, M and Bennett, V and Hoffmann, E, (eds.) Earth’s Oldest Rocks. (pp. 255-273). Elsevier: Amsterdam, Netherlands.
[4] Romanowicz, B. Using seismic waves to image Earth’s internal structure. Nature 451, 266–268 (2008). https://doi.org/10.1038/nature06583
[5] Dziewonski, A. M. & Anderson, D. L. Preliminary reference Earth model. Phys. Earth Planet. Inter. 25, 297–356 (1981).
[6] Barnes, S; Arndt, N; (2018) Distribution and Geochemistry of Komatiites and Basalts Through the Archean. In: Van Kranendonk, M and Bennett, V and Hoffmann, E, (eds.) Earth’s Oldest Rocks. (pp. 103-132). Elsevier: Amsterdam, Netherlands.
[7] Herzberg, C., Condie, K., & Korenaga, J. 2010. Thermal history of the Earth and its petrological expression. Earth and Planetary Science Letters, 292(1-2), 79-88. https://doi.org/10.1016/j.epsl.2010.01.022
[8] Reimink, J; Bauer, A; Chacko, T; (2018) The Acasta Gneiss Complex. In: Van Kranendonk, M and Bennett, V and Hoffmann, E, (eds.) Earth’s Oldest Rocks. (pp. 329-345). Elsevier: Amsterdam, Netherlands.
[9] Roth, A.S.G., et al., 2014. Combined 147,146Sm‐143,142Nd constraints on the longevity and residence time of early terrestrial crust. Geochemistry Geophysics Geosystems 15 (6), 2329-2345. https://doi.org/10.1002/2014GC005313
[10] Cates, N. L. & Mojzsis, S. J. Pre-3,750 Ma supracrustal rocks from the Nuvvuagittuq supracrustal belt, northern Québec. Earth Planet. Sci. Lett. 255, 9–21 (2007).
[11] O’Neil, J; Carlson, R; Papineau, D; Levine, E; Francis, D; (2018) The Nuvvuagittuq Greenstone Belt: A Glimpse of Earth’s Earliest Crust. In: Van Kranendonk, M and Bennett, V and Hoffmann, E, (eds.) Earth’s Oldest Rocks. (pp. 349-374). Elsevier: Amsterdam, Netherlands.
[12] O’Neil, Jonathan & Carlson, Richard & Francis, Don & Stevenson, Ross. (2008). Neodymium-142 Evidence for Hadean Mafic Crust. Science (New York, N.Y.). 321. 1828-31. 10.1126/science.1161925. On ResearchGate.
[13] Dodd, M., Papineau, D., Grenne, T. et al. Evidence for early life in Earth’s oldest hydrothermal vent precipitates. Nature 543, 60–64 (2017). https://doi.org/10.1038/nature21377