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Anvil clouds over the Amazon casting shadows on the green surface below. Photo taken from the ISS, space visible beyond the planet at the top of the image.

Anvil clouds over the Amazon, captured from the vantage point of the ISS.

Credit: . Image number ISS042-E-215303 from the International Space Station. Credit: Earth Science and Remote Sensing Unit, NASA Johnson

Aryaman Gupta

Graduate Student

Research theme

  • Biological physics
  • Climate physics

Sub department

  • Atmospheric, Oceanic and Planetary Physics

Research groups

  • Climate processes
aryaman.gupta@magd.ox.ac.uk
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  • About
  • Publications
Cloud forest of the Bolivian Andes. Two forest-covered hillsides slope to the center of the image, with one hill farther out, shrouded by clouds that seem to be rising from the trees in the foreground.
Credit: Photo by Juan Pablo Urioste

I am a DPhil student in the Interdisciplinary Life and Environmental Sciences (ILESLA) Doctoral Training Program, supervised by Yadvinder Malhi (School of Geography and the Environment), Philip Stier (Atmospheric, Oceanic and Planetary Physics), and Stuart West (Department of Biology). 

My research focuses on the role that aerosols (small solid or liquid particles suspended in the atmosphere) play in forest-atmosphere feedbacks in the Amazon. The Amazon is a vital component of the modern climate system, with transpiration from trees shaping continental-scale precipitation and wind patterns. Many trees there produce small organic molecules called Volatile Organic Compounds (VOCs), which enable them to resist heat and drought stress, regulate their microclimate, and to convey information to their neighbours. In the atmosphere, these VOCs form aerosols called SOAs, which dominate the aerosol load over the Amazon, and thus shape the cloud structure and radiative flux of the Amazonian atmosphere. My research examines whether the ecological and climatic roles of VOCs are linked, to better understand how eco-evolutionary dynamics in forests have shaped the atmosphere (and vice-versa), how those relationships may change in response to forest cover loss and climate change, or in response to positive interventions such as afforestation. To study this, I use a combination of km-scale climate modelling, fieldwork, satellite data analysis, and eco-evolutionary analytic and agent-based modelling.

Ask me about

km-scale climate modelling, doing fieldwork on ecosystem-climate interactions, climate data operators (cdo), Python, R, films, hiking, industrial and environmental history, writing fiction or making art.

Do feel free to contact me if you have any questions!

Research interests

Ecosystem-atmosphere feedbacks
Aerosol-climate interactions
Biosphere-Geosphere coupling
Atmospheric dynamics
Clouds
Convection in the Tropics
Ecology and Evolution of information transmission

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