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Explore the rheological properites of minerals at extreme conditions

Publications

[1] Burnley, P.C. and Schmidt, C., 2006 Finite element modeling of elastic volume changes in fluid inclusions: Comparison with experiment, American Mineralogist. (in press)
[2] Burnley, Pamela C., Davis, Mary K., 2004, Volume Changes in Fluid Inclusions Produced by Heating and Pressurization: A Finite Element Modeling Study. The Canadian Mineralogist, v 42, pp. 1369-1382.
[3] Burnley, P. C., 2005, Investigation of martensitic-like transformation from Mg2GeO4 olivine to its spinel structure polymorph. Am. Min., v 90, no. 8-9, pp. 1315-1324.
[4] Mei, S., W. B. Durham, and Y. Wang, Deformation of olivine at high pressures using the Deformation-DIA, EOS Trans. AGU, 84(46), 2003.
[5] Mei, S., W. B. Durham and D. Kohlstedt, Experimental investigation of the creep behavior of olivine at high pressures up to 12 GPa, EOS Trans. AGU, 86(52), 2005.
[6] Green, H.W., II. 2003. Tiny triggers deep down. Nature 424:893-894. Invited News and Views.
[7] Jung, H., H.W. Green, II, L.F. Dobrzhinetskaya 2004. Intermediate-depth earthquake faulting by dehydration embrittlement with negative volume change. Nature 428:545-549.
[8] Zhang, J., H.W. Green, K.N. Bozhilov, Z-M Jin, 2004. Faulting induced by precipitation of water at grain boundaries in hot subducting oceanic crust. Nature 428:633-636.
[9] Jung H and Green II HW, 2004. Experimental faulting of serpentinite during dehydration: Implications for earthquakes, seismic low-velocity zones, and anomalous hypocenter distribution in subduction zones. International Geology Review 46:1089-1102.
[10] Green, Harry W. II and Jung, Haemyeong (2005) Fluids, Faulting, and Flow. Elements, 1:31-37.
[11] Green, II, H.W. 2005. New light on deep earthquakes. In Our Everchanging Earth, special edition (electronic version), pp. 97-105, Scientific American, www.sciam.com
[12] Jung, H., Fei, Y., Silver, P.G., Green, HW., 2006. New system for detecting acoustic emissions in multianvil experiments: Application to deep seismicity in the Earth. Rev. Sci. Instruments 77:014501 1-7.
[13] Zhang, J., Green II, H.W. 2006. On the Deformation of UHP Eclogite: from Laboratory to Nature. International Geology Review (in press).
[14] Jung, H., Fei, Y., Silver, P.G., Green, HW., Implications for Earthquake Triggering Mechanisms from High-Pressure Acoustic Emissions (Nature, submitted)
[15] Bercovici, D. and Karato, S., 2003. Whole mantle convection and transitionzone water filter. Nature, 425: 39-44.
[16] Hirose, K., Karato, S., Cormier, V.F., Brodholt, J.P. and Yuen, D.A., 2006. Unsolved problems in the lowermost mantle. Geophysical Research Letters, 33: 10.1029/2006GL025691. TPI 6615843 D-2
[17] Huang, X., Xu, Y. and Karato, S., 2005. Water content of the mantle transition zone from the electrical conductivity of wadsleyite and ringwoodite. Nature, 434: 746-749.
[18] Jung, H., Katayama, I., Jiang, Z., Hiraga, T. and Karato, S., 2006. Effects of water and stress on the lattice preferred orientation in olivine. Tectonophysics, 421: 1-22.
[19] Karato, S., 2006a. Influence of hydrogen-related defects on the electrical conductivity and plastic deformation of mantle minerals: A critical review. In: S.D. Jacobsen and S. van der Lee (Editors), Earth's Deep Water Cycle.
American Geophysical Union, Washington DC.
[20] Karato, S., 2006b. Microscopic models for the influence of hydrogen on physical and chemical properties of minerals. In: D.A. Yuen, S. Maruyama, S. Karato and B.F. Windley (Editors), Superplume: Beyond Plate Tectonics.
Springer, pp. in press.
[21] Karato, S., 2006c. Remote sensing of hydrogen in Earth's mantle. In: H. Keppler and J.R. Smyth (Editors), Water in Nominally Anhydrous Minerals. Mineralogical Society of America, Washington DC.
[22] Karato, S., Bercovici, D., Leahy, G., Richard, G. and Jing, Z., 2006. Transition zone water filter model for global material circulation: Where do we stand? In: S.D. Jacobsen and S. van der Lee (Editors), Earth's Deep Water Cycle.
American Geophysical Union, Washington DC.
[23] Katayama, I., Jung, H. and Karato, S., 2004. New type of olivine fabric at modest water content and low stress. Geology, 32: 1045-1048.
[24] Katayama, I. and Karato, S., 2005. Influence of water on the rheological properties of olivine in the exponential flow law regime. Earth and Planetary Science Letters.
[25] Katayama, I. and Karato, S., 2006a. Effect of water on low-temperature highstress rheology of olivine. Journal of Geophysical Research: submitted.
[26] Katayama, I. and Karato, S., 2006b. Effects of temperature on the B- to C-type fabric transition in olivine. Physics of the Earth and Planetary Interior, 157: 33-45.
[27] Katayama, I. and Karato, S., 2006c. Relative strength of garnet and olivine and its implications for the geodynamic behavior of geochemical reservoirs. Nature.
[28] Katayama, I., Karato, S. and Brandon, M., 2005. Evidence of high water content in the deep upper mantle inferred from deformation microstructures. Geology, 33: 623-616.
[29] Long, M., Xiao, X., Jiang, Z., Evans, B. and Karato, S., 2006. Lattice preferred orientation in deformed polycrystalline (Mg,Fe)O and implications for seismic anisotropy in D". Physics of Earth and Planetary Interiors, 156: 75-88.
[30] Matsukage, K.N., Jing, Z. and Karato, S., 2005a. Density of hydrous silicate melt at the conditions of the Earth's deep upper mantle. Nature, 438: 488-491.
[31] Wang, Y, W. B. Durham, I. C. Getting, D. J. Weidner (2003) The deformation DIA: a new apparatus for high temperature triaxial deformation to pressures up to 15 GPa, Rev. Sci. Instrum., 743002-3011. TPI 6615843 D-3
[32] Uchida, T., Y. Wang, M.L. Rivers, S.R. Sutton (2004) Yield strength and strain hardening of MgO up to 8 GPa measured in the deformation-DIA with monochromatic X-ray diffraction. Earth Planet. Sci. Lett., 226, 117-126.
[33] Uchida, T., Y. Wang, M. Rivers, S. Sutton (2005) Stress and strain measurements of polycrystalline materials under controlled deformation using monochromatic synchrotron radiation. in: Advances in High-Pressure Technology for Geophysical Application, eds., J. Chen, Y. Wang, T. Duffy, G. Shen, L. Dobrzhinetskaya, Elsevier, Amsterdam, pp. 137-165.
[34] Nishiyama, N., Y. Wang, T. Uchida, T. Irifune, M.L. Rivers, S.R. Sutton (2005) Pressure and strain dependence on the strength of sintered polycrystalline Mg2SiO4 ringwoodite, Geophys. Res. Lett., 32, L04307, doi:
10.1029/2004GL022141.
[35] Wenk, H.-R., G. Ischia, N. Nishiyama, Y. Wang, T. Uchida (2005) Texture development and deformation mechanisms in ringwoodite, Phys. Earth Planet. Int., 152, 191-199.
[36] Chen, J., L. Li, D.J. Weidner, and M. Vaughan, Deformation Experiments using Synchrotron X-rays: In situ stress and strain measurements at high pressure and temperature, Physics of the Earth and Planetary Interiors, 143-144, 347-356, 2004.
[37] Cordier, P., H. Couvy, S. Merkel, and D.J. Weidner, Plastic deformation of minerals at high pressure: Experimental techniques, EMU Notes in Mineralogy, 7, 339- 355, 2005.
[38] Durham, W.B., D.J. Weidner, S.I. Karato, and Y.B. Wang, New developments in deformation experiments at high pressure, Plastic Deformation of Minerals and Rocks, 51, 21-49, 2002.
[39] Li, L., Rheology of Olivine at High Pressure and High Temperature PhD Thesis Stony Brook University, PhD thesis, Stony Brook University, 2003.
[40] Raterron, P., J.H. Chen, and D.J. Weidner, A process for low-temperature olivinespinel transition under quasihydrostatic stress, Geophysical Research Letters, 29 36-1 to 36-4, 2002.
[41] Wang, Y.B., W.B. Durham, I.C. Getting, and D.J. Weidner, The deformation-DIA: A new apparatus for high temperature triaxial deformation to pressures up to 15 GPa, Review of Scientific Instruments, 74, 3002- 3011, 2003.
[42] Weidner, D.J., and L. Li, Measurement of stress using synchrotron x-rays, in Journal of Physics: Condensed Matter, pp. in press, 2006
[43] Weidner, D.J., L. Li, W. Durham, and J. Chen, High-Temperature Plasticity Measurements Using Synchrotron XRays, in in: ADVANCES IN HIGHPRESSURE TECHNIQUES FOR GEOPHYSICAL APPLICATIONS, edited by J. Chen, Y. Wang, T.S. Duffy, G. Shen, and L.P.D.E. Science, pp. 123-135, 2005.
[44] Weidner, D.J., L. Li, M. Davis, and J. Chen, Effect of Plasticity on Elastic Modulus Measurements, Geophys. Res Lett., 31, 6621, 2004
[45] Weidner, D.J., L. Li, W. Durham, and J. Chen, High-Temperature Plasticity Measurements Using Synchrotron X-Rays, in in: ADVANCES IN HIGHPRESSURE TECHNIQUES FOR GEOPHYSICAL APPLICATIONS, edited by J. Chen, Y. Wang, T.S. Duffy, G. Shen, and L.P. Dobrzhinetskaya, eds., Elsevier Science, pp. 123-135, 2005. TPI 6615843
D-4
[46] Li, L., D.J. Weidner, J. Chen, M.T. Vaughan, M. Davis, and W.B. Durham, X-ray strain analysis at high pressure: Effect of plastic deformation in MgO. , Journal of Applied Physics, 95(12), 8357-8365., 2004
[47] Li, L., D. Weidner, P. Raterron, J. Chen, and M. Vaughan, Stress Measurements of Deforming Olivine at High Pressure, Physics of the Earth and Planetary Interiors 143-144, 357-367, 2004.
[48] Chen, J., L. Li, T. Yu, H. Long, D.J. Weidner, L. Wang, and M. Vaughan, Do Reuss and Voigt bounds really bound in high pressure rheology experiments?, Journal of Physics: Condensed Matter, in press, 2006.
[49] Chen, J., D.J. Weidner, and M.T. Vaughan, Strength of Mg0.9Fe0.1SiO3 Perovskite at High Pressure and Temperature, Nature, 419, 824-826 2002.
[50] Chen, J., D.J. Weidner, L. Wang, M.T. Vaughan, and C.E. Young, Density measurements of molten materials at high pressure using synchrotron X-ray radiography: melting volume of FeS, in ADVANCES IN HIGHPRESSURE
TECHNIQUES FOR GEOPHYSICAL APPLICATIONS, edited by J. Chen, Y. Wang, T.S. Duffy, G. Shen, and L.P. Dobrzhinetskaya, eds., Elsevier Science, pp. 185-194 2005.
[51] Li, L., H. Long, D.J. Weidner, and P. Raterron, Plastic flow of pyrope at mantle pressure and temperature. , in American Mineralogist, pp. in press., 2006a.
[52] Li, L., P. Raterron, D. Weidner, and J.H. Chen, Olivine flow mechanisms at 8 GPa, Physics of the Earth and Planetary Interiors 138, 113-129 2003.
[53] Li, L., D.J. Weidner, P. Raterron, J. Chen, M. Vaughan, S. Mei, and B. Durham, Deformation of olivine at mantle pressure using D-DIA. , European Journal of Mineralogy, 18, 7-19., 2006b.
[54] Raterron, P., Y. Wu, D.J. Weidner, and J. Chen, Low temperature olivine rheology at high pressure. , Phys. Earth Planet. Int., 145 149-159., 2004
[55] Xu, Y., D.J. Weidner, J. Chen, M.T. Vaughan, Y. Wang, and T. Uchida, Flow-Law for Ringwoodite in the Subduction Zone, Physics of the Earth and Planetary Interiors 136, 3-9 2003.

[56] Weidner, D.J. and L. Li, Method for the study of high P/T deformation and rheology, in Treatise on Geophysics, G. Schubert, Editor. 2007, Elsevier. p. in press.
[57] Raterron, P., J. Chen, L. Li, D. Weidner, and P. Cordier, Pressure-induced slip-system transition in forsterite: Single-crystal rheological properties at mantle pressure and temperature. American Mineralogist, 2007. in press.
[58] Li, L. and D.J. Weidner, Energy dissipation of materials at high pressure and high temperature Review of Scientific Instruments, 2007. 78(1): p. DOI: 10.1063/1.2735587.
[59] Li, L., A. Addad, D. Weidner, H. Long, and J. Chen, High pressure deformation in two-phase aggregates. Tectonophysics, 2007. 439(1-4): p. 107-117.