World's Best Scientists 2026 revealed!

D-Index & Metrics

Environmental Sciences

D-Index
54
Citations
9627
World Ranking
4079
National Ranking
281

Overview

Martin Dameris is a researcher affiliated with the German Aerospace Center in Germany. Their work primarily focuses on Earth and Planetary Sciences, with a particular emphasis on Atmospheric Science, Global and Planetary Change, and Astronomy and Astrophysics. The main topics of their research include Atmospheric Ozone and Climate, Atmospheric chemistry and aerosols, Atmospheric and Environmental Gas Dynamics, Atmospheric aerosols and clouds, Meteorological Phenomena and Simulations, Climate variability and models, and Ionosphere and magnetosphere dynamics.

Dameris has contributed to publications in various scientific venues, frequently publishing in "Atmospheric chemistry and physics." Other venues include "Zenodo (CERN European Organization for Nuclear Research)," "Atmosphere," "Geoscientific model development," and "AIP Advances."

Notable recent papers authored or coauthored by Dameris include the following:

  • Future trends in stratosphere-to-troposphere transport in CCMI models, 2020, Atmospheric chemistry and physics
  • Record low ozone values over the Arctic in boreal spring 2020, 2021, Atmospheric chemistry and physics
  • Possible Effects of Greenhouse Gases to Ozone Profiles and DNA Active UV-B Irradiance at Ground Level, 2020, Atmosphere
  • Ozone, DNA-active UV radiation, and cloud changes for the near-global mean and at high latitudes due to enhanced greenhouse gas concentrations, 2022, Atmospheric chemistry and physics
  • Updating the radiation infrastructure in MESSy (based on MESSy version 2.55), 2024, Geoscientific model development

Throughout their career, Dameris has frequently collaborated with other researchers. Some of the most common coauthors include Patrick Jöckel, Matthias Nützel, Sabine Brinkop, Hella Garny, and Laura L. Pan.

Best Publications

  • Assessment of temperature, trace species, and ozone in chemistry-climate model simulations of the recent past

    V. Eyring;N. Butchart;D. W. Waugh;H. Akiyoshi

  • Impact of uncertainties in atmospheric mixing on simulated UTLS composition and related radiative effects

    Martin Riese;F. Ploeger;A. Rap;B. Vogel

  • Multimodel projections of stratospheric ozone in the 21st century

    V. Eyring;D. W. Waugh;G. E. Bodeker;Eugene C. Cordero

  • Impact of stratospheric ozone on Southern Hemisphere circulation change: A multimodel assessment

    S.-W. Son.;E. P. Gerber;J. Perlwitz;J. Perlwitz;L. M. Polvani

  • Uncertainties and assessments of chemistry-climate models of the stratosphere

    J. Austin;D. Shindell;S. R. Beagley;C. Bruhl

  • Chemistry-Climate Model Simulations of Twenty- First Century Stratospheric Climate and Circulation Changes

    Neal Butchart;I. Cionni;V. Eyring;T. G. Shepherd

  • Determining the tropopause height from gridded data

    Thomas Reichler;Thomas Reichler;Martin Dameris;Robert Sausen

  • Multi-model assessment of stratospheric ozone return dates and ozone recovery in CCMVal-2 models

    V. Eyring;I. Cionni;G. E. Bodeker;Andrew J. Charlton-Perez

  • Origin and Variability of Upper Tropospheric Nitrogen Oxides and Ozone at Northern Mid-Latitudes

    V. Grewe;D. Brunner;M. Dameris;J.L. Grenfell

  • Multimodel assessment of the upper troposphere and lower stratosphere: Tropics and global trends

    A. Gettelman;M. I. Hegglin;S.-W. Son;Jung-Hyun Kim

  • Multimodel climate and variability of the stratosphere

    N. Butchart;Andrew J. Charlton-Perez;I. Cionni;S. C. Hardiman

  • The Brewer-Dobson circulation and total ozone from seasonal to decadal time scales

    Mark Weber;S. Dikty;J.P. Burrows;Hella Garny

  • The impact of greenhouse gases and halogenated species on future solar UV radiation doses

    Petteri Taalas;Jussi Kaurola;Arve Kylling;Drew Shindell

  • Estimates of Ozone Return Dates from Chemistry-Climate Model Initiative Simulations

    Sandip S. Dhomse;Douglas Kinnison;Martyn P. Chipperfield;Ross J. Salawitch

  • A Strategy for Process-Oriented Validation of Coupled Chemistry- Climate Models

    V. Eyring;N. R. P. Harris;M. Rex;Ted G. Shepherd

  • Review of the formulation of present-generation stratospheric chemistry-climate models and associated external forcings

    Olaf Morgenstern;M. A. Giorgetta;K. Shibata;V. Eyring

  • Stratosphere‐troposphere coupling and annular mode variability in chemistry‐climate models

    Edwin P. Gerber;Mark P. Baldwin;Hideharu Akiyoshi;John Austin

  • Development of a chemistry module for GCMs: first results of a multiannual integration

    B. Steil;M. Dameris;C. Brühl;P. J. Crutzen

  • The Tropical Tropopause Layer 1960–2100

    Andrew Gettelman;Thomas Birner;Veronika Eyring;H. Akiyoshi

  • Long-term changes and variability in a transient simulation with a chemistry-climate model employing realistic forcing

    Martin Dameris;Volker Grewe;Michael Ponater;Rudolf Deckert

Frequent Co-Authors

Volker Grewe
Volker Grewe German Aerospace Center
Michael Ponater
Michael Ponater German Aerospace Center
Patrick Jöckel
Patrick Jöckel German Aerospace Center
Veronika Eyring
Veronika Eyring University of Bremen
Robert Sausen
Robert Sausen German Aerospace Center
Martyn P. Chipperfield
Martyn P. Chipperfield University of Leeds
Eugene Rozanov
Eugene Rozanov Saint Petersburg State University
Slimane Bekki
Slimane Bekki Sorbonne University
Ulrike Langematz
Ulrike Langematz Freie Universität Berlin
Theodore G. Shepherd
Theodore G. Shepherd University of Reading

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