Topographic controls on erosion rates in tectonically active mountain ranges
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[1] J. Avouac,et al. Erosion as a driving mechanism of intracontinental mountain growth , 1996 .
[2] M. Brandon,et al. Macrogeomorphic evolution of the post-Triassic Appalachian mountains determined by deconvolution of the offshore basin sedimentary record , 1996 .
[3] K. Whipple,et al. Geomorphic limits to climate-induced increases in topographic relief , 1999, Nature.
[4] P. Zeitler,et al. Synchronous anatexis, metamorphism, and rapid denudation at Nanga Parbat (Pakistan Himalaya) , 1993 .
[5] M. Brandon,et al. Late Cenozoic exhumation of the Cascadia accretionary wedge in the Olympic Mountains, northwest Washington State , 1998 .
[6] D. Kalderon,et al. Hedgehog acts as a somatic stem cell factor in the Drosophila ovary , 2001, Nature.
[7] Michael A. Ellis,et al. Landsliding and the evolution of normal‐fault‐bounded mountains , 1998 .
[8] M. A. Carson. An application of the concept of threshold slopes to the Laramie Mountains, Wyoming , 1973 .
[9] William E. Dietrich,et al. Evidence for nonlinear, diffusive sediment transport on hillslopes and implications for landscape morphology , 1999 .
[10] M. Brandon,et al. A Fluvial Record of Long-term Steady-state Uplift and Erosion Across the Cascadia Forearc High, Western Washington State , 2001 .
[11] P. Pinet,et al. Continental erosion and large‐scale relief , 1988 .
[12] M. Brandon,et al. Steady-state exhumation of the European Alps , 2001 .
[13] P. Fitzgerald,et al. Late Cenozoic Uplift of Denali and Its Relation to Relative Plate Motion and Fault Morphology , 1993, Science.
[14] J. Syvitski,et al. Geomorphic/Tectonic Control of Sediment Discharge to the Ocean: The Importance of Small Mountainous Rivers , 1992, The Journal of Geology.
[15] Michel Klein,et al. MASS ACCUMULATION RATES IN ASIA DURING THE CENOZOIC , 2002 .
[16] P. Allen,et al. Sediment flux from a mountain belt derived by landslide mapping , 1997 .
[17] K. Lambeck,et al. Erosion-isostatic rebound models for uplift: an application to south-eastern Australia , 1985 .
[18] M. Summerfield,et al. Natural controls of fluvial denudation rates in major world drainage basins , 1994 .
[19] A. Howard. A detachment-limited model of drainage basin evolution , 1994 .
[20] J. Chorowicz,et al. Description of terrain as a fractal surface, and application to digital elevation model quality assessment , 1991 .
[21] I. Rodríguez‐Iturbe,et al. A coupled channel network growth and hillslope evolution model: 1. Theory , 1991 .
[22] P. Kamp,et al. Fission track analysis of the Late Cenozoic vertical kinematics of continental pacific crust, South Island, New Zealand , 1993 .
[23] C. France‐Lanord,et al. Higher erosion rates in the Himalaya: Geochemical constraints on riverine fluxes , 2001 .
[24] T. Dixon,et al. Topographic and volcanic asymmetry around the Red Sea: Constraints on rift models , 1989 .
[25] Russell H. Campbell,et al. Soil slips, debris flows, and rainstorms in the Santa Monica Mountains and vicinity, southern California , 1975 .
[26] Sean D. Willett,et al. Orogeny and orography: The effects of erosion on the structure of mountain belts , 1999 .
[27] D. Montgomery,et al. Limits to Relief , 1995, Science.
[28] W. Dietrich,et al. Hillslope evolution by nonlinear creep and landsliding: An experimental study , 2001 .
[29] S. Willett,et al. Thermal-mechanical model for crustal thickening in the central Andes driven by ablative subduction , 1998 .
[30] J. Lorenzo,et al. Thermal uplift and erosion across the continent-ocean transform boundary of the southern Exmouth Plateau , 1992 .
[31] M. Jansson. A global survey of sediment yield , 1988 .
[32] Yuan-hui Li,et al. Denudation of Taiwan Island since the Pliocene Epoch , 1976 .
[33] R. H. Meade,et al. World-Wide Delivery of River Sediment to the Oceans , 1983, The Journal of Geology.
[34] K. Furlong,et al. Geodynamic and geomorphic evolution of the Permo-Triassic appalachian mountains , 1989 .
[35] K. Lambeck,et al. The post‐Palaeozoic uplift history of south‐eastern Australia , 1986 .
[36] Weather Roulette,et al. Climate , 1858, The Sanitary Review and Journal of Public Health.
[37] David R. Montgomery,et al. Climate, tectonics, and the morphology of the Andes , 2001 .
[38] P. Molnar,et al. Late Cenozoic uplift of mountain ranges and global climate change: chicken or egg? , 1990, Nature.
[39] J. F. Shroder,et al. Unroofing of the Nanga Parbat Himalaya , 2000, Geological Society, London, Special Publications.
[40] D. J. Petley,et al. The Existence of Threshold Hillslopes in the Denudation of the Landscape , 1970 .
[41] M. A. Khan,et al. Tectonics of the Nanga Parbat Syntaxis and the Western Himalaya , 2000 .
[42] P. O. Koons,et al. The topographic evolution of collisional mountain belts; a numerical look at the Southern Alps, New Zealand , 1989 .
[43] B. Horton. Erosional control on the geometry and kinematics of thrust belt development in the central Andes , 1999 .
[44] K. Farley,et al. Post-10 Ma uplift and exhumation of the northern Coast Mountains , 2001 .
[45] F. Ahnert. Functional relationships between denudation, relief, and uplift in large, mid-latitude drainage basins , 1970 .
[46] Philippe Fullsack,et al. Erosional control of active compressional orogens , 1992 .
[47] W. C. Pitman,et al. The effect of sea level changes on the morphology of mountain belts , 1991 .
[48] E. Fielding,et al. Erosion and tectonics at the margins of continental plateaus , 1994 .
[49] D. Montgomery. Slope Distributions, Threshold Hillslopes, and Steady-state Topography , 2001 .
[50] Peizhen Zhang,et al. Increased sedimentation rates and grain sizes 2–4 Myr ago due to the influence of climate change on erosion rates , 2001, Nature.
[51] Nicholas Brozovic,et al. Bedrock incision, rock uplift and threshold hillslopes in the northwestern Himalayas , 1996, Nature.