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Geodynamic References

Bodorkos, S., Sandiford M., Oliver, N. H. S. & Cawood, P., 2002.  High-T, low-P metamorphism in the Palaeoproterozoic Halls Creek Orogen, northern Australia: the middle crustal response to a mantle-related transient thermal pulse.  Journal of Metamorphic Geology, 20, 217-237.

Collins, W. J., 2002.  Hot orogens, tectonic switching, and creation of continental crust.  Geology, 30, 535-538.

Elkins-Tanton, L. T., 2007. Continental magmatism, volatile recycling, and a heterogeneous mantle caused by lithospheric gravitational instabilities. Journal of Geophysical Research-Solid Earth 112, 345–354.

Elkins-Tanton, L. T. & Hager, B. H., 2000. Melt intrusion as a trigger for lithospheric foundering and the eruption of the Siberian flood basalts. Geophysical Research Letters 27 (23), 3937–3940.

Gerya, T.V., Yuen, D.A.  Robust characteristics method for modelling multiphase visco-elasto-plastic thermo-mechanical problems. Physics of the Earth and Planetary Interiors 163, 83–105 (2007).

Gibson, R. L., 1991.  Hercynian low-pressure-high temperature regional metamorphism and subhorizontal foliation development in the Canigou massif, Pyrenees, France- Evidence for crustal extension.  Geology, 19, 380-383.

Gonzalez, C. M., Gorczyk, W., Gerya, T. V., 2015, in press.  Decarbonation of subducting slabs: Insight from petrological–thermomechanical modeling.  Gondwana Research.

Gorczyk, W., 2012.  Initiation of Rayleigh–Taylor instabilities in intra-cratonic settings.  Tectono-physics, vol 514 – 517, 146 – 155.

Gorczyk, W., Hobbs, B., Gessner, K., Gerya, T., 2013.  Intracratonic geodynamics.  Gondwana Research, 24, 838-848.

Gorczyk, W., Smithies, H., Korhonen, F., Howard, H. & Quentin de Gromard, R., 2015.  Ultra-hot Mesoproterozoic evolution of intracontinental central Australia.  Geoscience Frontiers, 6, 23 – 37.

Gorczyk, W. & Vogt, K., 2015.  Tectonics and melting in intra-continental settings.  Gondwana Research, 27, 196-208.

Houseman, G., McKenzie, D.P., 1982. Numerical experiments on the onset of convective instability in the earths mantle. Geophysical Journal of the Royal Astronomical Society 68 (1), 133–164.

Houseman, G.A., McKenzie, D.P., et al., 1981. Convective instability of a thickened boundary-layer and its relevance for the thermal evolution of continental convergent belts. Journal of Geophysical Research 86 (NB7), 6115–6132.

Houseman, G. A., Molnar, P., 1997. Gravitational (Rayleigh–Taylor) instability of a layer with non-linear viscosity and convective thinning of continental lithosphere. Geophysical Journal International 128 (1), 125–150.

Lenardic, A., Moresi, L., Muhlhaus, H., 2000. The role of mobile belts for the longevity of deep cratonic lithosphere: the crumple zone model. Geophysical Research Letters 27 (8), 1235–1238.

Lenardic, A., Moresi, L.N., Muhlhaus, H., 2003. Longevity and stability of cratonic lithosphere: insights from numerical simulations of coupled mantle convection and continental tectonics. Journal of Geophysical Research—Solid Earth 108 (B6).

Lister, G., & Forster, M., 2008.  Tectonic mode switches and the nature of orogenesis.  Lithos, 113, 274-291.

Piriz, A. R., Cela, J. J. L. & Tahir, N. A., 2009.  Rayleigh–Taylor instability in elastic-plastic solids. Journal of Applied Physics, 105.

Ranalli, G. Rheology of the Earth. Chapman and Hall, London, 413pp (1995).

Rosenbaum, G., & Mo, W., 2011.  Tectonic and magmatic responses to the subduction of high bathymetric relief.  Gondwana Research, 19, 571-582.

Schellart, W. P., 2005.  Influence of the subducting plate velocity on the geometry of the slab and migration of the subduction hinge.  Earth & Planetary Science Letters, 231, 197-291.

Schellart, W. P., Lister, G. S., & Jessel, M. W., 2002.  Analogue modeling of arc and backarc deformation in the New Hebrides arc and North Fiji Basin.  Geology, 30, 311-314.

Yoshida, M., 2010. Preliminary three-dimensional model of mantle convection with deformable, mobile continental lithosphere. Earth and Planetary Science Letters 295 (1–2), 205–218.

Yoshida, M., 2012. Dynamic role of the rheological contrast between cratonic and oceanic lithospheres in the longevity of cratonic lithosphere: a three-dimensional numerical study. Tectonophysics 532, 156–166.