The present relief and geomorphological configuration of India are the outcome of complex endogenetic and exogenetic forces operating over millions of years. Geologists and geomorphologists classify India into three distinct macro-geological units based on structural history, rock composition, and tectonic deformation:
The Peninsular Block is an ancient, highly consolidated crystalline shield that constituted the northern part of the ancient supercontinent Gondwanaland. Its characteristics include:
- Archaean Craton: Composed largely of ancient Archaean gneisses, granites, and highly metamorphosed Dharwar schists formed over 2.5 to 3.5 billion years ago.
- Structural Rigidity: Since the Cambrian period, it has remained predominantly stable, resisting intense horizontal folding forces and experiencing primarily vertical epeirogenic faulting and fractures (e.g., the grabens / rift valleys of the Narmada, Tapi, and Damodar rivers).
- Cretaceous Deccan Traps: At the close of the Mesozoic era (Cretaceous period), intense fissure basaltic volcanism covered over 500,000 sq km with horizontal lava sheets, which weathered into the moisture-retentive Black Cotton Soil (Regur).
- Outliers: The Karbi Anglong and Meghalaya (Shillong) Plateau in the northeast and Rajasthan in the west are detached structural extensions of this same peninsular shield, separated from the Chota Nagpur Plateau by the Malda Gap (Garo-Rajmahal Gap).
In stark contrast to the rigid Peninsula, the Himalayas are young, weak, flexible, and tectonically active fold mountains of Cenozoic (Tertiary) origin:
- Geosynclinal Origin: Formed by the compression and uplift of marine sedimentary strata accumulated in the ancient Tethys Geosyncline, triggered by the collision between the northward-drifting Indian Plate and the stationary Eurasian Plate (~50-60 million years ago).
- Active Tectonics: Characterized by complex thrust faulting, recumbent folds, nappe structures, deep antecedent river gorges, and continuing tectonic uplift resulting in high seismicity (earthquake vulnerability).
A vast structural depression or foredeep (geosynclinal trough) formed between the rising Himalayan mountains to the north and the rigid Peninsular shield to the south. During the Pleistocene and Recent (Holocene) epochs, it was filled with deep alluvial sediments brought down by the Himalayan and Peninsular rivers, reaching depths of 1,000 to 2,000 meters.