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References

1
V. S. Solomatov and L.-N. Moresi,
Stagnant lid convection on Venus,
J. Geophys. Res. 101, 4737-4753, 1996.

2
C. P. Conrad and B. H. Hager,
The Effects of Plate Bending and Fault Strength at Subduction Zones on Plate Dynamics,
J. Geophys. Res. (in press), 1999.

3
S. Karato, M. R. Riedel, and D. A. Yuen,
Rheological Structure and Deformation of Subducted Slabs in the Mantle Transition Zone,
Phys. Earth Planet. Inter. (submitted), 1999.

4
P. Bak, C. Tang, and K. Wiesenfeld,
Self-organized criticality: An explanation of 1/f Noise,
Phys. Rev. Lett. 59, 381-384, 1987.

5
D. L. Turcotte and G. Schubert,
Geodynamics. Applications of continuum physics to geological problems,
John Wiley & Sons, New York, 1982.

6
M. Kameyama, D. A. Yuen, and S. Karato,
Thermal-mechanical effects of low-temperature plasticity (the Peierls mechanism) on the deformation of a viscoelastic shear zone,
Earth Planet. Sci. Lett. 168, 159-172, 1999.

7
M. A. Biot,
Theory of folding of stratified viscoelastic media and its implications in tectonics and orogenesis,
Geol. Soc. Am. Bull. 72, 1595-1620, 1961.

8
M. F. Ashby and R. A. Verrall,
Micromechanisms of flow and fracture, and their relevance to the rheology of the upper mantle,
Proc. Royal Soc. London A 288, 59-95, 1977.

9
H. Haken,
Cooperative effects in systems far from thermal equilibrium and in nonphysical systems,
Rev. Mod. Phys. 47, 67-90, 1975.

10
P. Bak,
how nature works, the science of self-organized criticality,
Springer Verlag, New York, 1996.

11
C. Goetze and B. Evans,
Stress and temperature in the bending lithosphere as constrained by experimental rock mechanics,
Geophys. J. Royal Astron. Soc. 59, 463-478, 1979.

12
D. P. McKenzie,
Speculations on the consequences and causes of plate motions,
Geophys. J. Royal Astron. Soc. 18, 1-32, 1979.

13
M. Abramowitz and I. A. Stegun,
Handbook of mathematical functions,
National Bureau of Standards, Washington, 1964.

14
D. A. Yuen and G. Schubert,
Asthenospheric shear flow: thermally stable or unstable ?,
Geophys. Res. Lett. 4, 503-506, 1977.

15
T. B. Larsen, D. A. Yuen, and A. V. Malevsky,
Dynamical consequences on fast subducting slabs from a self-regulating mechanism due to viscous heating in variable viscosity convection,
Geophys. Res. Lett. 22, 1277-1280, 1995.

16
H. J. Jensen,
Self-Organized Criticality : Emergent Complex Behavior in Physical and Biological Systems,
Cambridge University Press, Cambridge, 1998.

17
S. Karato,
Phase Transformations and Rheological Properties of Mantle Minerals,
In D. J. Crossley, editor, Earth's Deep Interior (The Doornbos Memorial Volume), volume 7 of The Fluid Mechanics of Astrophysics and Geophysics, chapter 8, pp. 223-272. Gordon and Breach Science Publishers, Amsterdam, 1997.

18
J. Branlund, K. Regenauer-Lieb, and D. A. Yuen,
Fast collapse of passive margins from sediment loading,
Geophys. Res. Lett. (submitted), 1999.

19
L. Moresi and V. S. Solomatov,
Mantle convection with a brittle lithosphere: thoughts on the global tectonic styles of the Earth and Venus,
Geophys. J. Int. 133, 669-682, 1998.

20
D. L. Turcotte,
An Episodic Hypothesis for Venusian Tectonics,
J. Geophys. Res. 98, 17,061-17,068, 1993.

21
M. Ogawa,
Shear instability in a viscoelastic material as the cause of deep focus earthquakes,
J. Geophys. Res. 92, 13,801-13,810, 1987.

22
S. M. Schmalholz and Yu. Podladchikov,
Buckling versus Folding: Importance of Viscoelasticity,
Geophys. Res. Lett. (in press), 1999.

23
S. Karato and P. Wu,
Rheology of the Upper Mantle: A Synthesis,
Science 260, 771-778, 1993.



Michael Riedel
7/29/1999