Rabiul Haque Biswas
Indian Institute of Technology Kanpur, University of Lausanne, Physical Research Laboratory, IIT Bombay, Okayama University of Science, Ramakrishna Mission Vidyamandira
About
My research is focused on quantitative understanding of various Earth Surface Processes from present to Quaternary timescale, using different experimental techniques, mainly Luminescence, and Numerical modelling. Presently, I am involved in Research and Development of Low Temperature Thermochronology to understand the exhumation/erosion of rock in orogenic belt, Rock Surface Exposure and Erosion to understand glacier dynamics and climatic implication, Surface Palaeothermometry to understand past climate, Dating of Sediments and Cobbles to understand the dates and rates of palaeofloods, extreme megaflood events, tectonically developed river terraces, and evolution of paleochannels. Furthermore, I apply state-of-the-art methodologies to Planetary samples, meteorites, to understand their thermal and cosmic radiation histories.
Employment
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Indian Institute of Technology Kanpur Assistant Professor2021 - Present
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University of Lausanne Postdoctoral Fellow2015 - 2020
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Okayama University of Science JSPS Post-doctoral Fellow2013 - 2015
Education
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Physical Research Laboratory Ph.D.2006 - 2013
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IIT Bombay M.Sc.2004 - 2006
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Ramakrishna Mission Vidyamandira B.Sc.2001 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (38)
- CoRSEER: The Calculator of Rock Surface Exposure Age and Erosion Rates for Rock Surface Luminescence dating Save
- Supplementary material to "CoRSEER: The Calculator of Rock Surface Exposure Age and Erosion Rates for Rock Surface Luminescence dating" Save
- Towards robust measurement protocols for palaeothermometry – addressing sensitivity change in feldspar TL Save
- OSLThermo and ESRThermo: Libraries of codes for trapped-charge thermochronometry Save
- Towards accurate modelling of rock surface exposure dating using luminescence to estimate post-exposure erosion rate Save
- General order kinetics model for OSL rock surface exposure dating Save
- Eustatic change modulates exhumation in the Japanese Alps Save
- Maximized erosion at the last glacial maximum revealed by thermoluminescence thermochronometry Save
- Constraining Last Glacial Maximum bedrock surface temperatures in the Western Alps using thermoluminescence paleothermometry. Save
- Constraining past bedrock surface temperatures at the Gorner glacier, Switzerland, using feldspar thermoluminescence for surface paleothermometry. Save