Mechanical Strength and Nature of Lithospheric Deformation Beneath the Rifted Sedimentary Basins of the East India Passive Margin
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[1] K. Krishna,et al. Evidence for paleo-continental margin and folding of relic fragment of oceanic lithosphere, northeast Indian subcontinent , 2022, Marine Geology.
[2] V. M. Tiwari,et al. Lithospheric-mantle modification beneath the thick sedimentary fan of Bay of Bengal: Inference from the 3D gravity model , 2022, Tectonophysics.
[3] R. Gawthorpe,et al. The role of structural inheritance in the development of high-displacement crustal faults in the necking domain of rifted margins: The Klakk Fault Complex, Frøya High, offshore mid-Norway , 2020 .
[4] M. Andrés‐Martínez,et al. Lithospheric Strength and Rift Migration Controls on Synrift Stratigraphy and Breakup Unconformities at Rifted Margins: Examples From Numerical Models, the Atlantic and South China Sea Margins , 2020, Tectonics.
[5] X. Xiong,et al. The role of lithospheric heterogeneities in continental rifting: Implications for rift diversity in the North China Craton , 2020 .
[6] K. Krishna,et al. Post-breakup deformations in the Bay of Bengal: Response of crustal strata to the sediment load , 2019, Journal of Earth System Science.
[7] N. Kusznir,et al. Evaluating magmatic additions at a magma-poor rifted margin: An East Indian case study , 2019, Geophysical Journal International.
[8] K. Krishna,et al. Crustal architecture and Moho topography beneath the eastern Indian and Bangladesh margins – new insights on rift evolution and the continent–ocean boundary , 2019, Journal of the Geological Society.
[9] P. Audet,et al. Curie depth estimation from magnetic anomaly data: a re-assessment using multitaper spectral analysis and Bayesian inference , 2018, Geophysical Journal International.
[10] W. Sassi,et al. Extending Continental Lithosphere With Lateral Strength Variations: Effects on Deformation Localization and Margin Geometries , 2018, Front. Earth Sci..
[11] S. Schmalholz,et al. Necking of the Lithosphere: A Reappraisal of Basic Concepts With Thermo‐Mechanical Numerical Modeling , 2018, Journal of Geophysical Research: Solid Earth.
[12] L. Lavier,et al. Effect of contrasting strength from inherited crustal fabrics on the development of rifting margins , 2018 .
[13] P. Osmundsen,et al. Crustal‐Scale Fault Interaction at Rifted Margins and the Formation of Domain‐Bounding Breakaway Complexes: Insights From Offshore Norway , 2018 .
[14] S. Buiter,et al. Complex fault interaction controls continental rifting , 2017, Nature Communications.
[15] J. Davis,et al. Influences on the development of volcanic and magma-poor morphologies during passive continental rifting , 2017 .
[16] G. Corti,et al. Controls of inherited lithospheric heterogeneity on rift linkage: Numerical and analog models of interaction between the Kenyan and Ethiopian rifts across the Turkana depression , 2017 .
[17] W. Xiao,et al. Effective elastic thickness along the conjugate passive margins of India, Madagascar and Antarctica: A re-evaluation using the Hermite multitaper Bouguer coherence application , 2017 .
[18] C. Beaumont,et al. Effects of lateral strength contrasts and inherited heterogeneities on necking and rifting of continents , 2016, Tectonophysics.
[19] M. Talwani,et al. The Tectonic origin of the Bay of Bengal and Bangladesh , 2016 .
[20] K. Krishna,et al. Sediment pathways and emergence of Himalayan source material in the Bay of Bengal , 2016 .
[21] R. Müller,et al. The tectonic stress field evolution of India since the Oligocene , 2015 .
[22] A. Klaus,et al. Neogene and late Paleogene record of Himalayan orogeny and climate: A transect across the Middle Bengal Fan , 2015 .
[23] L. Lavier,et al. The role of inheritance in structuring hyperextended rift systems: Some considerations based on observations and numerical modeling , 2015 .
[24] Walter H. F. Smith,et al. New global marine gravity model from CryoSat-2 and Jason-1 reveals buried tectonic structure , 2014, Science.
[25] J. Kirby. Estimation of the effective elastic thickness of the lithosphere using inverse spectral methods: The state of the art , 2014 .
[26] G. Gehrels,et al. Paleocene‐Eocene foreland basin evolution in the Himalaya of southern Tibet and Nepal: Implications for the age of initial India‐Asia collision , 2014 .
[27] S. Cloetingh,et al. Thermo-mechanical controls on intra-plate deformation and the role of plume-folding interactions in continental topography , 2013 .
[28] G. Manatschal,et al. Quantification and restoration of extensional deformation along the Western Iberia and Newfoundland rifted margins , 2013 .
[29] P. Osmundsen,et al. Structural comparison of archetypal Atlantic rifted margins: A review of observations and concepts , 2013 .
[30] J. Hanchar,et al. Dating the India–Eurasia collision through arc magmatic records , 2013 .
[31] E. Masini,et al. Anatomy and tectono-sedimentary evolution of a rift-related detachment system: The example of the Err detachment (central Alps, SE Switzerland) , 2012 .
[32] R. Nair,et al. A new assessment of the elastic thickness (Te) structure of the Indian shield, and its implications , 2012 .
[33] S. T. Sinha,et al. East Indian margin evolution and crustal architecture: integration of deep reflection seismic interpretation and gravity modelling , 2012 .
[34] G. Corti. Evolution and characteristics of continental rifting: Analog modeling-inspired view and comparison with examples from the East African Rift System , 2012 .
[35] M. Radhakrishna,et al. Early Cretaceous fracture zones in the Bay of Bengal and their tectonic implications: Constraints from multi-channel seismic reflection and potential field data , 2012 .
[36] P. Osmundsen,et al. Crustal taper and topography at passive continental margins , 2011 .
[37] J. F. Kirby,et al. Improving the spatial resolution of effective elastic thickness estimation with the fan wavelet transform , 2011, Comput. Geosci..
[38] C. Beaumont,et al. Depth-dependent extension, two-stage breakup and cratonic underplating at rifted margins , 2011, Nature.
[39] P. Bown,et al. Timing of India‐Asia collision: Geological, biostratigraphic, and palaeomagnetic constraints , 2010 .
[40] C. Ranero,et al. Sequential faulting explains the asymmetry and extension discrepancy of conjugate margins , 2010, Nature.
[41] O. Catuneanu,et al. Delineation of the 85°E ridge and its structure in the Mahanadi Offshore Basin, Eastern Continental Margin of India (ECMI), from seismic reflection imaging , 2010 .
[42] R. Hobbs,et al. Seismic structure, gravity anomalies, and flexure of the Amazon continental margin, NE Brazil , 2009 .
[43] T. Reston. The structure, evolution and symmetry of the magma-poor rifted margins of the North and Central Atlantic: A synthesis , 2009 .
[44] T. J. Majumdar,et al. Geoid and gravity anomaly data of conjugate regions of Bay of Bengal and Enderby Basin: New constraints on breakup and early spreading history between India and Antarctica , 2009 .
[45] D. Heslop,et al. Correlation of Himalayan exhumation rates and Asian monsoon intensity , 2008 .
[46] C. Swain,et al. An accuracy assessment of the fan wavelet coherence method for elastic thickness estimation , 2008 .
[47] R. Müller,et al. Breakup and early seafloor spreading between India and Antarctica , 2007 .
[48] J. Ali,et al. When and where did India and Asia collide , 2007 .
[49] T. Minshull,et al. Tectonosedimentary evolution of the deep Iberia‐Newfoundland margins: Evidence for a complex breakup history , 2007 .
[50] R. Hobbs,et al. Evidence for unusually thin oceanic crust and strong mantle beneath the Amazon Fan , 2006 .
[51] A. Watts,et al. Gravity anomalies and segmentation at the East Coast, USA continental margin , 2006 .
[52] D. McKenzie,et al. The relationship between depth, age and gravity in the oceans , 2006 .
[53] J. Morgan,et al. The rift to drift transition at non-volcanic margins: Insights from numerical modelling , 2006 .
[54] Luc L. Lavier,et al. A mechanism to thin the continental lithosphere at magma-poor margins , 2006, Nature.
[55] C. Swain,et al. An effective elastic thickness map of Australia from wavelet transforms of gravity and topography using Forsyth's method , 2006 .
[56] T. Reston. Polyphase faulting during the development of the west Galicia rifted margin , 2005 .
[57] J. F. Kirby,et al. Which wavelet best reproduces the Fourier power spectrum? , 2005, Comput. Geosci..
[58] S. Operto,et al. Structure and development of a microcontinent: Elan Bank in the southern Indian Ocean , 2003 .
[59] S. Singh,et al. Elastic thickness and isostatic coherence anisotropy in the South Indian Peninsular Shield and its implications , 2003 .
[60] Anthony Watts,et al. Lithospheric strength and its relationship to the elastic and seismogenic layer thickness , 2003 .
[61] C. Ranero,et al. Mechanisms of extension at nonvolcanic margins: Evidence from the Galicia interior basin, west of Iberia , 2003 .
[62] G. K. Reddy,et al. High mantle heat flow in a Precambrian granulite province: Evidence from southern India , 2003 .
[63] A. Lin,et al. Origin of the West Taiwan basin by orogenic loading and flexure of a rifted continental margin , 2001 .
[64] T. Minshull,et al. Evolution of magma-poor continental margins from rifting to seafloor spreading , 2001, Nature.
[65] A. Poliakov,et al. Erosion and rheology controls on synrift and postrift evolution: Verifying old and new ideas using a fully coupled numerical model , 2001 .
[66] A. Watts. Gravity anomalies, flexure and crustal structure at the Mozambique rifted margin , 2001 .
[67] T. Reston,et al. Rheological evolution during extension at nonvolcanic rifted margins: Onset of serpentinization and development of detachments leading to continental breakup , 2001 .
[68] M. Radhakrishna,et al. India–East Antarctica conjugate margins: rift-shear tectonic setting inferred from gravity and bathymetry data , 2001 .
[69] S. Zhong,et al. Observations of flexure and the rheology of oceanic lithosphere , 2000 .
[70] R. Phillips,et al. Crust‐mantle decoupling by flexure of continental lithosphere , 2000 .
[71] M. Krishna. Gravity anomalies, sediment loading and lithospheric flexure associated with the Krishna–Godavari basin, eastern continental margin of India , 2000 .
[72] M. Cosca,et al. The thermal history of the Eastern Ghats Belt (India) as revealed by U–Pb and 40Ar/39Ar dating of metamorphic and magmatic minerals: implications for the SWEAT correlation , 1999 .
[73] A. Watts,et al. A process‐oriented approach to modeling the gravity signature of continental margins , 1999 .
[74] N. Kusznir,et al. 2D flexural backstripping of extensional basins; the need for a sideways glance , 1998, Petroleum Geoscience.
[75] K. Krishna,et al. Crustal evolution and sedimentation history of the Bay of Bengal since the Cretaceous (Paper 97JB01339) , 1997 .
[76] M. Diament,et al. Isostasy, equivalent elastic thickness, and inelastic rheology of continents and oceans , 1996 .
[77] M. Diament,et al. The effective elastic thickness (Te) of continental lithosphere: What does it really mean? , 1995 .
[78] J. Curray. Sediment volume and mass beneath the Bay of Bengal , 1994 .
[79] S. Stein,et al. A model for the global variation in oceanic depth and heat flow with lithospheric age , 1992, Nature.
[80] Anthony B. Watts. The effective elastic thickness of the lithosphere and the evolution of foreland basins , 1992 .
[81] H. Jackson,et al. Admittance signatures of rifted and transform margins: examples from eastern Canada , 1991 .
[82] C. Powell,et al. Pre-breakup continental extension in East Gondwanaland and the early opening of the eastern Indian Ocean , 1988 .
[83] M. McNutt,et al. Variations of elastic plate thickness at continental thrust belts , 1988 .
[84] A. Watts. Gravity anomalies, crustal structure and flexure of the lithosphere at the Baltimore Canyon Trough , 1988 .
[85] J. Rogers. The Dharwar Craton and the Assembly of Peninsular India , 1986, The Journal of Geology.
[86] S. M. Naqvi,et al. Precambrian Continental Crust of India and Its Evolution , 1986, The Journal of Geology.
[87] Donald W. Forsyth,et al. Subsurface loading and estimates of the flexural rigidity of continental lithosphere , 1985 .
[88] D. Sawyer. Total tectonic subsidence: A parameter for distinguishing crust type at the U.S. Atlantic Continental Margin , 1985 .
[89] J. Thorne,et al. Long-term thermo-mechanical properties of the continental lithosphere , 1983, Nature.
[90] M. Steckler,et al. Lithospheric flexure and the evolution of sedimentary basins , 1982, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[91] G. Karner,et al. On isostasy at Atlantic‐type continental margins , 1982 .
[92] A. Cazenave,et al. On the response of the ocean lithosphere to sea‐mount loads from Geos 3 satellite radar altimeter observations , 1980 .
[93] John G. Sclater,et al. Continental stretching: An explanation of the Post-Mid-Cretaceous subsidence of the central North Sea Basin , 1980 .
[94] B. Evans,et al. Stress and temperature in the bending lithosphere as constrained by experimental rock mechanics , 1979 .
[95] A. Watts. An analysis of Isostasy in the World''s Oceans 1 , 1978 .
[96] D. McKenzie,et al. Some remarks on the development of sedimentary basins , 1978 .
[97] B. Parsons,et al. An analysis of the variation of ocean floor bathymetry and heat flow with age , 1977 .
[98] Carl Bowin,et al. The relationship between bathymetry and gravity in the Atlantic Ocean , 1976 .
[99] R. Rao,et al. Radioactive heat generation and heat flow in the Indian shield , 1976 .
[100] G. Manatschal,et al. Upper-plate magma-poor rifted margins: Stratigraphic architecture and structural evolution , 2016 .
[101] Pascal Audet,et al. Toward mapping the effective elastic thickness of planetary lithospheres from a spherical wavelet analysis of gravity and topography , 2014 .
[102] K. Krishna,et al. Dating of the 85 ° E Ridge ( northeastern Indian Ocean ) using marine magnetic anomalies , 2011 .
[103] L. Lavier,et al. The effect of sedimentary cover on the flexural strength of continental lithosphere , 1997, Nature.
[104] S. Calmant,et al. Elastic layer thickening with age of the oceanic lithosphere: a tool for prediction of the age of volcanoes or oceanic crust , 1990 .
[105] B. Wernicke,et al. Uniform-sense normal simple shear of the continental lithosphere , 1985 .
[106] J. R. Cochran. Simple Models of Diffuse Extension and the Pre-Seafloor Spreading Development of the Continental Margin of the North-Eastern Gulf of Aden , 1981 .