Henrik Svensmark
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Danish physicist
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Physics
Henrik Svensmark's Degrees
- PhD Physics University of Copenhagen
Why Is Henrik Svensmark Influential?
(Suggest an Edit or Addition)According to Wikipedia, Henrik Svensmark is a physicist and professor in the Division of Solar System Physics at the Danish National Space Institute in Copenhagen. He is known for his work on the hypothesis that fewer cosmic rays are an indirect cause of global warming via cloud formation.
Henrik Svensmark's Published Works
Published Works
- Variation of cosmic ray flux and global cloud coverage—a missing link in solar-climate relationships (1997) (1066)
- Influence of Cosmic Rays on Earth's Climate (1998) (341)
- Cosmoclimatology: a new theory emerges (2007) (223)
- Cosmic ray decreases affect atmospheric aerosols and clouds (2009) (201)
- Experimental evidence for the role of ions in particle nucleation under atmospheric conditions (2007) (168)
- Contrasting atmospheric and climate dynamics of the last-glacial and Holocene periods (1996) (138)
- The role of atmospheric ions in aerosol nucleation – a review (2008) (113)
- Results from the CERN pilot CLOUD experiment (2009) (113)
- Cosmic Rays, Clouds, and Climate (2000) (107)
- Galactic cosmic ray and El Nino Southern Oscillation trends in International Satellite Cloud Climatology Project D2 low-cloud properties (2003) (94)
- Solar Influence on Earth's Climate (2003) (78)
- COSMIC RAYS AND EARTH’S CLIMATE (2000) (77)
- Increased ionization supports growth of aerosols into cloud condensation nuclei (2017) (73)
- Response of Cloud Condensation Nuclei (> 50 nm) to changes in ion-nucleation (2012) (59)
- Aerosol nucleation induced by a high energy particle beam (2010) (56)
- The Chilling Stars: A New Theory of Climate Change (2003) (55)
- Evidence of nearby supernovae affecting life on Earth (2012) (55)
- What do we really know about the Sun-climate connection? (1997) (48)
- Forecast of atmospheric boundary-layer height utilised for ETEX real-time dispersion modelling (1996) (47)
- The response of clouds and aerosols to cosmic ray decreases (2016) (42)
- Cosmic Rays and Earth's Climate (2000) (41)
- Reply to comments on “Variation of cosmic ray flux and global cloud coverage — a missing link in solar–climate relationships (2000) (38)
- Ab initio studies of O 2 − (H 2 O) n and O 3 − (H 2 O) n anionic molecular clusters, n ≤12 (2011) (37)
- Imprint of Galactic dynamics on Earth's climate (2006) (36)
- Comment on “Solar influences on cosmic rays and cloud formation: A reassessment” by Bomin Sun and Raymond S. Bradley (2004) (36)
- Cosmic rays and the biosphere over 4 billion years (2006) (33)
- Effects of cosmic ray decreases on cloud microphysics (2012) (33)
- Structures and reaction rates of the gaseous oxidation of SO 2 by an O 3 − (H 2 O) 0-5 cluster – a density functional theory investigation (2011) (27)
- Evidence for the role of ions in aerosol nucleation. (2008) (24)
- Variation of cosmic ray flux and global cloud coverage—A new dawn for solar climate relations? (1997) (22)
- Comment on "Variation of cosmic ray flux and global coverage - a missing link in solar-climate relationships" (1999) (14)
- Model of optical response of marine aerosols to Forbush decreases (2009) (13)
- An isotopic analysis of ionising radiation as a source of sulphuric acid (2012) (13)
- A STUDY OF THE LINK BETWEEN COSMIC RAYS AND CLOUDS WITH A CLOUD CHAMBER AT THE CERN PS (2000) (12)
- Experimental study of H 2 SO 4 aerosol nucleation at high ionization levels (2017) (9)
- The chilling stars : a cosmic view of climate change (2008) (8)
- In uence of Cosmic Rays on Earth ' s Climate (1998) (7)
- INFLUENCE OF COSMIC RAYS ON CLIMATE (2002) (6)
- A 3D particle Monte Carlo approach to studying nucleation (2017) (6)
- Ab initio studies of O-2 (-) ( H 2 O ) ( n ) and O-3 (-) ( H 2 O ) ( n ) anionic molecular clusters (2011) (6)
- Aerosol nucleation in an ultra-low ion density environment (2012) (5)
- The solar and Southern Oscillation components in the satellite altimetry data (2015) (5)
- Near-Earth supernova activity during the past 35 Myr (2017) (4)
- Cosmic Rays and the Evolution of Earths Climate During the Last 4.6 Billion Years (2003) (4)
- Atmospheric ionization and cloud radiative forcing (2021) (4)
- An isotope view on ionising radiation as a source of sulphuric acid (2012) (4)
- Influence of Solar Activity (2005) (4)
- The Sun’s Role in Climate Change (2015) (4)
- Correlations in sea-level elevations (1997) (4)
- Supernova Rates and Burial of Organic Matter (2022) (3)
- Comment on: Solar influences on cosmic rays and cloud formation: A reassessment. Authors' reply (2004) (2)
- Approximate analytical solutions to the condensation-coagulation equation of aerosols (2015) (2)
- ISAC Literature Study: Climate Variability Correlated with Solar Activity (2005) (2)
- CLOUD : an atmospheric research facility at CERN (2000) (2)
- Period three generation on microwave-induced constant-voltage steps of Josephson tunnel junctions (1987) (2)
- One-third (period three) harmonic generation in microwave-driven Josephson tunnel junctions (1986) (1)
- CERN Proposal SPSC/P317; the CLOUD experiment (2004) (1)
- How did the Sun affect the climate when life evolved on the Earth (2010) (1)
- The Antarctic climate anomaly and galactic cosmic rays (2006) (1)
- Sulphuric acid aerosols in low oxygen environments (2022) (1)
- The ION‐CAGE Code: A Numerical Model for the Growth of Charged and Neutral Aerosols (2020) (1)
- The Phanerozoic climate (2022) (1)
- Increased ionization supports growth of aerosols into cloud condensation nuclei (2017) (1)
- New Ion-Nucleation Mechanism Relevant for the Earth's Atmosphere: Experimental Set-up (2005) (1)
- Stochastic effects in H2SO4-H2O cluster growth (2019) (1)
- The Ion and Charged Aerosol Growth Enhancement (ION-CAGE) code: A numerical model for the growth of charged and neutral aerosols (2019) (1)
- Influence of Solar Activity Cycles on Earth’s Climate (2005) (1)
- Diffuse sunlight and cosmic rays: Missing pieces of the forest growth change attribution puzzle? (2021) (1)
- Addendum to the cloud proposal (2000) (0)
- Experimental investigation of the role of ions in aerosol nucleation (2008) (0)
- D ec 2 00 6 The Antarctic climate anomaly and galactic cosmic rays (0)
- ISAC Identification of Relevant Data: Possible Interactions and Modifications (2005) (0)
- Atmospheric Ionisation In Regions of Low Cloud Formation At Various Time Scales. (2002) (0)
- A persistent influence of supernovae on biodiversity over the Phanerozoic (2023) (0)
- Dynamic stabilization of a microwave-driven Josephson tunnel junction against a period-doubling bifurcation (1989) (0)
- New Ion-Nucleation Mechanism Relevant for the Earth's Atmosphere: Interpreting the Physics. (2005) (0)
- SPLITTING OF THE FIRST ZERO-FIELD STEP IN A JOSEPHSON JUNCTION OF INTERMEDIATE LENGTH (1986) (0)
- ISAC WP300 and WP 400: Data Interpretation and Quantification of global climate modulations (2006) (0)
- The adventurous journey of Spaceship Earth (2009) (0)
- Experimental Investigation of Aerosols Produced by Cosmic Rays (2005) (0)
- ENSO and cosmic rays (2001) (0)
- The Link between atmospheric Ionization and the formation of cloud condensation nuclei (2018) (0)
- Towards a Monte Carlo approach for the nucleation study of sulfuric acid clusters (2017) (0)
- 37 C T BALANCE OF A BOREAL SCOTS PINE FOREST (2012) (0)
- COSMIC RAYS AND CLOUDS: EXPERIMENTS AND OBSERVATIONS (2012) (0)
- Influence of cosmic radiation on aerosol and cloud formation over short time periods (2010) (0)
- Ab initio studies of O2-(H2O)n and O3-(H2O)n anionic molecular clusters, n12 (2011) (0)
- CAVITY MODES IN RECTANGULAR JOSEPHSON JUNCTIONS (1986) (0)
- Possible Mechanisms of Solar Activity Modulation of Earth Climate (1998) (0)
- Effects of Forbush decreases on clouds determined from PATMOS-x (2022) (0)
- ISAC Identification of Relevant Data: Earth’s Climate (2005) (0)
- Nucleation in an ultra low ionization environment (2010) (0)
- Clouds and Cosmic Rays (2003) (0)
- COSMIC RAYS , CLOUDS , AND CLIMA (2000) (0)
- Measurements of the high frequency loss near the plasma resonance in Josephson tunnel junctions (1987) (0)
- The Effect of Forbush Decreases on Atmospheric Aerosols and Clouds from The PATMOS-x Satellite from 1978 to 2018 (2021) (0)
- The CLOUD proposal (2000) (0)
- Ab initio studies of O-2(-) (H2O)(n) and O-3(-) (H2O)(n) anionic molecular clusters, n (2018) (0)
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What Schools Are Affiliated With Henrik Svensmark?
Henrik Svensmark is affiliated with the following schools: