Kirsten Zickfeld
#164,672
Most Influential Person Now
Climatologist.
Kirsten Zickfeld's AcademicInfluence.com Rankings
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Earth Sciences
#2659
World Rank
#3579
Historical Rank
Atmospheric Sciences
#234
World Rank
#243
Historical Rank
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Earth Sciences Communications
Kirsten Zickfeld's Degrees
- PhD Climate Science University of Victoria
- Masters Atmospheric Science University of Victoria
- Bachelors Physics University of Victoria
Why Is Kirsten Zickfeld Influential?
(Suggest an Edit or Addition)According to Wikipedia, Kirsten Zickfeld is a German climate physicist who is now based in Canada. She is a member of the United Nations' Intergovernmental Panel on Climate Change, and was one of the authors on the Intergovernmental Panel on Climate Change's Special Report on Global Warming of 1.5 °C .Zickfeld completed a Master of Science degree in physics at the Free University of Berlin in 1998, followed by a doctorate in physics at the University of Potsdam in 2004.[7]
Kirsten Zickfeld's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- The proportionality of global warming to cumulative carbon emissions (2009) (874)
- Lifetime of Anthropogenic Climate Change: Millennial Time Scales of Potential CO2 and Surface Temperature Perturbations (2009) (315)
- Setting cumulative emissions targets to reduce the risk of dangerous climate change (2008) (298)
- Long-Term climate change commitment and reversibility: An EMIC intercomparison (2012) (220)
- Stability of the Atlantic meridional overturning circulation: A model intercomparison (2012) (193)
- Ongoing climate change following a complete cessation of carbon dioxide emissions (2011) (176)
- Historical and idealized climate model experiments: an intercomparison of Earth system models of intermediate complexity (2013) (154)
- The Role of Poleward-Intensifying Winds on Southern Ocean Warming (2007) (149)
- Expert judgements on the response of the Atlantic meridional overturning circulation to climate change (2007) (143)
- Current fossil fuel infrastructure does not yet commit us to 1.5 °C warming (2019) (116)
- On the proportionality between global temperature change and cumulative CO2 emissions during periods of net negative CO2 emissions (2016) (115)
- Is the Indian summer monsoon stable against global change? (2005) (107)
- Is the climate response to CO2 emissions path dependent? (2012) (106)
- Expert judgments about transient climate response to alternative future trajectories of radiative forcing (2009) (99)
- An Integrated Assessment of changes in the thermohaline circulation (2009) (95)
- The Carbon Dioxide Removal Model Intercomparison Project (CDRMIP): rationale and experimental protocol for CMIP6 (2018) (90)
- Long term climate implications of 2050 emission reduction targets (2007) (83)
- Centuries of thermal sea-level rise due to anthropogenic emissions of short-lived greenhouse gases (2017) (77)
- Climate response to zeroed emissions of greenhouse gases and aerosols (2012) (72)
- Focus on cumulative emissions, global carbon budgets and the implications for climate mitigation targets (2018) (70)
- Sensitivity of carbon budgets to permafrost carbon feedbacks and non-CO2 forcings (2015) (70)
- Is there warming in the pipeline? A multi-model analysis of the Zero Emissions Commitment from CO2 (2020) (69)
- Chapter 2: Mitigation pathways compatible with 1.5°C in the context of sustainable development (2018) (66)
- Carbon‐cycle feedbacks of changes in the Atlantic meridional overturning circulation under future atmospheric CO2 (2008) (62)
- Estimating Carbon Budgets for Ambitious Climate Targets (2017) (60)
- The effectiveness of net negative carbon dioxide emissions in reversing anthropogenic climate change (2015) (59)
- Nonlinearity of Carbon Cycle Feedbacks (2010) (57)
- Response of the global carbon cycle to human‐induced changes in Southern Hemisphere winds (2007) (54)
- Path independence of climate and carbon cycle response over a broad range of cumulative carbon emissions (2014) (53)
- Modelling the impact of increased street tree cover on mean radiant temperature across Vancouver’s local climate zones (2019) (49)
- A low-order model for the response of the Atlantic thermohaline circulation to climate change (2004) (48)
- The time lag between a carbon dioxide emission and maximum warming increases with the size of the emission (2015) (47)
- The Zero Emissions Commitment Model Intercomparison Project (ZECMIP) contribution to C4MIP: quantifying committed climate changes following zero carbon emissions (2019) (43)
- Asymmetry in the climate–carbon cycle response to positive and negative CO2 emissions (2021) (43)
- Historical and idealized climate model experiments : An EMIC intercomparison (2012) (40)
- Opportunities and challenges in using remaining carbon budgets to guide climate policy (2020) (39)
- Urban tree planting to maintain outdoor thermal comfort under climate change: The case of Vancouver's local climate zones (2019) (39)
- What determines the warming commitment after cessation of CO2 emissions? (2017) (38)
- The influence of non-CO2 forcings on cumulative carbon emissions budgets (2018) (30)
- Path Independence of Carbon Budgets When Meeting a Stringent Global Mean Temperature Target After an Overshoot (2019) (27)
- Reducing the Risk of Abrupt Climate Change: Emissions Corridors Preserving the Atlantic Thermohaline Circulation (2003) (26)
- Atmospheric methane removal: a research agenda (2021) (25)
- Thermohaline Circulation Changes: A Question of Risk Assessment (2005) (24)
- Comment on "Saturation of the Southern Ocean CO2 Sink Due to Recent Climate Change" (2008) (23)
- Irreversible Ocean Thermal Expansion under Carbon Dioxide Removal (2018) (23)
- Evaluation of the University of Victoria Earth System Climate Model version 2.10 (UVic ESCM 2.10) (2019) (21)
- The Sensitivity of the Proportionality between Temperature Change and Cumulative CO2 Emissions to Ocean Mixing (2017) (20)
- Temporary nature-based carbon removal can lower peak warming in a well-below 2 °C scenario (2022) (18)
- Reducing the risk of Atlantic thermohaline circulation collapse: sensitivity analysis of emissions corridors (2008) (16)
- Special Report on Global warming of 1.5°C (SR15) - Chapter 1: Framing and Context (2018) (15)
- Theoretical study of the laser-induced femtosecond dynamics of small Si n clusters (1999) (15)
- Temporary Nature-based Carbon Removal Can Lower Peak Warming in a Well-below 2°C Scenario (2021) (12)
- Multi-parameter uncertainty analysis of a bifurcation point (2006) (10)
- Assessment and Management of Critical Events: The Breakdown of Marine Fisheries and The North Atlantic Thermohaline Circulation (2002) (10)
- Projected local rain events due to climate change and the impacts on waterborne diseases in Vancouver, British Columbia, Canada (2019) (9)
- The Carbon Dioxide Removal Model Intercomparison Project (CDR-MIP): Rationale and experimental design (2017) (9)
- The Contribution from Methane to the Permafrost Carbon Feedback (2017) (9)
- Emissions corridors for reducing the risk of a collapse of the Atlantic thermohaline circulation (2009) (8)
- Multi-century dynamics of the climate and carbon cycle under both high and net negative emissions scenarios (2022) (8)
- 23rd Century surprises: Long-term dynamics of the climate and carbon cycle under both high and net negative emissions scenarios (2021) (6)
- Parameter optimization using algorithmic differentiation in a reduced-form model of the Atlantic thermohaline circulation (2004) (5)
- Irreversibility of Marine Climate Change Impacts Under Carbon Dioxide Removal (2020) (5)
- Sensitivity of the Indian monsoon to human activities (2008) (4)
- Carbon Dioxide Emission Pathways Avoiding Dangerous Ocean Impacts (2012) (4)
- WETMETH 1.0: A new wetland methane model for implementation in Earth system models (2020) (3)
- Safeguarding the Atlantic thermohaline circulation: a sensitivity analysis of emission corridors (2003) (3)
- Emissions corridors preserving the Atlantic ocean thermohaline circulation (2002) (2)
- Maximum warming occurs about one decade after a carbon dioxide emission (2014) (2)
- Lifetime of anthropogenic climate change: Time-scales of CO2 and temperature perturbations (2009) (2)
- Corrigendum: Sensitivity of carbon budgets to permafrost carbon feedbacks and non-CO2 forcings (2015 Environ. Res. Lett. 10 125003) (2016) (2)
- Asymmetry in the climate-carbon cycle response to positive and negative CO2 emissions (2020) (2)
- Sink Due to Recent Climate Change" 2 Comment on "Saturation of the Southern Ocean CO (2008) (1)
- Quantifying land carbon cycle feedbacks under negative CO 2 emissions (2022) (1)
- Asymmetries in the climate response to CO2 emissions and removals (2021) (0)
- Comment on acp-2021-924 (2022) (0)
- What determines the magnitutde of climate change commitment after cessation of emissions (2013) (0)
- Current fossil fuel infrastructure does not yet commit us to 1.5 °C warming (2019) (0)
- Carbon Cycle Response to Artificial Atmospheric Carbon Dioxide Removal (2014) (0)
- Climate constraints on the carbon intensity of economic growth (2015) (0)
- Is there warming in the pipeline?: A multi-model analysis of the zero emission commitment from CO<$\mathsemicolon$sub>$\mathsemicolon$2<$\mathsemicolon$/sub>$\mathsemicolon$ (2020) (0)
- Irreversible ocean thermal expansion under negative CO 2 emissions (2017) (0)
- Path Dependence of Regional Climate Change (2013) (0)
- Comment on gmd-2020-176 (2021) (0)
- Model Data from 'Irreversibility of Marine Climate Change Impacts under Carbon Dioxide Removal' (2020) (0)
- New applications for an EMIC coupled to an atmospheric chemistry model - The University of Victoria Earth system climate model version 2.10 + FAIR chemistry module (2021) (0)
- Opportunities and challenges in using remaining carbon budgets to guide 1 climate policy 2 (2021) (0)
- Interactive comment on “ Irreversible ocean thermal expansion under negative CO 2 emissions ” by Dana Ehlert and Kirsten Zickfeld (2017) (0)
- Exploring the Role of Ocean Heat and Carbon Uptake in Determining the Linear Relationship between Global Warming and Cumulative CO 2 Emissions (2014) (0)
- Flagellation and motility in algae isolated from B . C . snow fields (2017) (0)
- The linearity between global warming and cumulative CO2 emissions: examining the effect of ocean mixing, heat, and carbon fluxes (2015) (0)
- Reducing The Risk Of Abrupt Climate Change: Emission Corridors Preserving The Thermohaline Circulation (2002) (0)
- P334 Extreme precipitation, turbidity, drinking water and acute gastro-intestinal illness in a canadian surface drinking water system: mechanisms and opportunities to build resilience to climate change (2016) (0)
- Supplementary material to "WETMETH 1.0: A new wetland methane model for implementation in Earth system models" (2020) (0)
- Effectiveness of carbon dioxide removal in lowering atmospheric CO 2 and reversing global warming in the context of 1.5 degrees (2017) (0)
- The role of artificial atmospheric CO 2 removal in stabilizing Earth’s climate (2014) (0)
- Review of Arora et al. (2020) (0)
- Carbon cycle and climate commitments from early human interference (2015) (0)
- Data for publication "Asymmetry in the climate-carbon cycle response to positive and negative CO2 emissions" (2021) (0)
- The greenhouse gas climate commitment and reversibility of peak warking from historical emissions (2020) (0)
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What Schools Are Affiliated With Kirsten Zickfeld?
Kirsten Zickfeld is affiliated with the following schools: