H. Venzac, K. Sellegri, and P. Laj, Nucleation events detected at the high altitude site of the Puy de Dôme Research Station, France. Boreal Environ. Res, vol.12, pp.345-359, 2007.

C. Rose, K. Sellegri, I. Moreno, F. Velarde, M. Ramonet et al., CCN production by new particle formation in the free troposphere, Atmos. Chem. Phys, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01962984

E. Herrmann, E. Weingartner, S. Henne, L. Vuilleumier, N. Bukowiecki et al., Analysis of long-term aerosol size distribution data from Jungfraujoch with emphasis on free tropospheric conditions, cloud influence, and air mass transport, J. Geophys. Res. Atmos, 2015.

M. Kulmala, J. Kontkanen, H. Junninen, K. Lehtipalo, H. E. Manninen et al., Direct Observations of Atmospheric Aerosol Nucleation. Science, vol.339, pp.943-946, 2013.

M. Kulmala, H. Vehkamäki, T. Petäjä, M. Dal-maso, A. Lauri et al., Formation and growth rates of ultrafine atmospheric particles: A review of observations, J. Aerosol Sci, vol.35, pp.143-176, 2004.

V. Kerminen, X. Chen, V. Vakkari, T. Petäjä, M. Kulmala et al., Atmospheric new particle formation and growth: Review of field observations, Environ. Res. Lett, vol.10, 2018.

D. V. Spracklen, K. S. Carslaw, M. Kulmala, V. M. Kerminen, S. L. Sihto et al., Contribution of particle formation to global cloud condensation nuclei concentrations, Geophys. Res. Lett, vol.35, 2008.

J. Merikanto, D. V. Spracklen, G. W. Mann, S. J. Pickering, and K. S. Carslaw, Impact of nucleation on global CCN, Atmos. Chem. Phys, vol.9, pp.8601-8616, 2009.

R. Makkonen, A. Asmi, H. Korhonen, H. Kokkola, S. Järvenoja et al., Sensitivity of aerosol concentrations and cloud properties to nucleation and secondary organic distribution in ECHAM5-HAM global circulation model, Atmos. Chem. Phys, vol.9, pp.1747-1766, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00304239

J. R. Pierce and P. J. Adams, Uncertainty in global CCN concentrations from uncertain aerosol nucleation and primary emission rates, Atmos. Chem. Phys, vol.9, pp.1339-1356, 2009.

R. Makkonen, A. Asmi, V. Kerminen, M. Boy, A. Arneth et al., Air pollution control and decreasing new particle formation lead to strong climate warming, Atmos. Chem. Phys, vol.12, pp.1515-1524, 2012.

E. M. Dunne, H. Gordon, A. Kürten, J. Almeida, J. Duplissy et al., Global atmospheric particle formation from CERN CLOUD measurements, Science, vol.354, pp.1119-1124, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01397769

A. D. Clarke, Atmospheric Nuclei in the Pacific Midtroposphere: Their Nature, Concentration, and Evolution, J. Geophys. Res, vol.98, pp.20633-20647, 1993.

A. D. Clarke, Z. Li, and M. Litchy, Aerosol dynamics in the equatorial Pacific marine boundary layer: Microphysics, diurnal cycles and entrainment, Geophys. Res. Lett, vol.23, pp.733-736, 1996.

A. D. Clarke, J. L. Varner, F. Eisele, R. L. Mauldin, D. Tanner et al., Particle production in the remote marine atmosphere: Cloud outflow and subsidence during ACE 1, J. Geophys. Res, vol.103, pp.16397-16409, 1998.

A. D. Clarke, V. N. Kapustin, F. L. Eisele, R. J. Weber, and P. H. Mc-murry, Particle production near marine clouds: Sulfuric acid and predictions from classical binary nucleation, Geophys. Res. Lett, vol.26, pp.2425-2428, 1999.

A. D. Clarke, F. Eisele, V. N. Kapustin, K. Moore, D. Tanner et al., Nucleation in the equatorial free troposphere: Favorable environments during PEM-Tropics, J. Geophys. Res, vol.104, pp.5735-5744, 1999.

P. Quinn and T. S. Bates, The case against climate regulation via oceanic phytoplankton sulphur emissions, Nature, vol.480, pp.51-56, 2011.

J. Pietikäinen, S. Mikkonen, A. Hamed, A. I. Hienola, W. Birmili et al., Analysis of nucleation events in the European boundary layer using the regional aerosol-climate model REMO-HAM with a solar radiation-driven OH-proxy, Atmos. Chem. Phys, vol.14, pp.11711-11729, 2014.

M. Collaud-coen, E. Andrews, D. Aliaga, M. Andrade, H. Angelov et al., Identification of topographic features influencing aérosol observations at High altitude stations, Atmos. Chem. Phys, vol.18, pp.12289-12313, 2018.

A. D. Clarke and V. N. Kapustin, A Pacific Aerosol Survey. Part I: A Decade of Data on Particle Production, Transport, Evolution, and Mixing in the Troposphere, J. Atmos. Sci, vol.59, pp.363-382, 2002.

D. A. Waddicor, G. Vaughan, T. W. Choularton, K. N. Bower, H. Coe et al., Aerosol observations and growth rates downwind of the anvil of a deep tropical thunderstorm, Atmos. Chem. Phys, vol.12, pp.6157-6172, 2012.

A. D. Clarke and V. N. Kapustin, Hemispheric Aerosol Vertical Profiles Anthropogenic Impacts on Optical Depth and Cloud Nuclei, Science, vol.329, pp.1488-1492, 2010.

L. Young, D. R. Benson, W. M. Montanaro, S. Lee, L. L. Pan et al., Enhanced new particle formation observed in the northern midlatitude tropopause region, J. Geophys. Res, vol.112, 2007.

F. Bianchi, J. Tröstl, H. Junninen, C. Frege, S. Henne et al., New particle formation in the free troposphere A question of chemistry and timing, Science, vol.352, pp.1109-1112, 2016.

J. Tröstl, K. Wayne, H. Chuang, M. Gordon, C. Heinritzi et al., The role of low-volatility organic compounds in initial particle growth in the atmosphere, Nature, vol.533, pp.527-531, 2016.

B. Wehner, F. Werner, F. Ditas, R. A. Shaw, M. Kulmala et al., Observations of new particle formation in enhanced UV irradiance zones near cumulus clouds, Atmos. Chem. Phys, vol.15, pp.11701-11711, 2015.

H. Korhonen, K. S. Carslaw, D. V. Spracklen, G. W. Mann, and M. T. Woodhouse, Influence of oceanic dimethyl sulfide emissions on cloud condensation nuclei concentrations and seasonality over the remote Southern Hemisphere oceans: A global model study, J. Geophys. Res, vol.113, 2008.

S. Crumeyrolle, H. E. Manninen, K. Sellegri, G. Roberts, L. Gomes et al., New particle formation events measured on board the ATR-42 aircraft during the EUCAARI campaign, Atmos. Chem. Phys, vol.10, pp.6721-6735, 2010.
URL : https://hal.archives-ouvertes.fr/insu-00554263

T. Hamburger, G. Mcmeeking, A. Minikin, W. Birmili, M. Dall'osto et al., Overview of the synoptic and pollution situation over Europe during the EUCAARI-LONGREX field campaign, Atmos. Chem. Phys, vol.11, pp.1065-1082, 2011.

C. Rose, K. Sellegri, E. Freney, R. Dupuy, A. Colomb et al., Airborne measurements of new particle formation in the free troposphere above the Mediterranean Sea during the HYMEX campaign, Atmos. Chem. Phys, vol.15, pp.10203-10218, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01975950

K. Sellegri, P. Laj, F. Peron, R. Dupuy, M. Legrand et al., Mass balance of free tropospheric aerosol at the Puy de Dôme (France) in winter, J. Geophys. Res, vol.108, 2003.

P. Bonasoni, P. Laj, F. Angelini, J. Arduini, U. Bonafè et al., The ABC-Pyramid Atmospheric Research Observatory in Himalaya for aerosol, ozone and halocarbon measurements, Sci. Total Environ, vol.391, pp.252-261, 2008.

J. L. Baray, Y. Courcoux, P. Keckhut, T. Portafaix, P. Tulet et al., Maïdo observatory: A new high-altitude station facility at Reunion Island (21 ? S, 55 ? E) for long-term atmospheric remote sensing and in situ measurements, Atmos. Meas. Tech, vol.6, pp.2865-2877, 2013.

H. Fischer, R. Kormann, T. Klüpfel, C. Gurk, R. Königstedt et al., Ozone production and trace gas correlationsduring the June MINATROC intensive measurement campaign at Mt. Cimone, Atmos. Chem. Phys, vol.3, pp.725-738, 2003.

A. Mirme, E. Tamm, G. Mordas, M. Vana, J. Uin et al., A widerange multi-channel Air Ion Spectrometer, Boreal Environ. Res, vol.12, pp.247-264, 2007.

J. M. Mäkelä, M. Riihelä, A. Ukkonen, V. Jokinen, and J. Keskinen, Comparison of mobility equivalent diameter with Kelvin-Thomson diameter using ion mobility data, J. Chem. Phys, vol.105, pp.1562-1571, 1996.

S. Mirme and A. Mirme, The mathematical principles and design of the NAIS-A spectrometer for the measurement of cluster ion and nanometer aerosol size distributions, Atmos. Meas. Tech, vol.6, pp.1061-1071, 2013.

H. Venzac, K. Sellegri, P. Laj, P. Villani, P. Bonasoni et al., High frequency new particle formation in the Himalayas. Proc. Natl Acad. Sci, vol.105, pp.15666-15671, 2008.

B. Foucart, K. Sellegri, P. Tulet, C. Rose, J. M. Metzger et al., High occurrence of new particle formation events at the Maïdo high altitude observatory (2150 m), Reunion Island (Indian Ocean), Atmos. Chem. Phys, vol.18, pp.9243-9261, 2018.

M. Kulmala, T. Petäjä, T. Nieminen, M. Sipilä, H. E. Manninen et al., Measurement of the nucleation of atmospheric aerosol particles, Nat. Protoc, vol.7, pp.1651-1667, 2012.

A. Wiedensohler, W. Birmili, A. Nowak, A. Sonntag, K. Weinhold et al., Mobility particle size spectrometers: Harmonization of technical standards and data structure to facilitate high quality long-term observations of atmospheric particle number size distributions, Atmos. Meas. Tech, vol.5, pp.657-685, 2012.
URL : https://hal.archives-ouvertes.fr/insu-00844363

J. Boulon, K. Sellegri, M. Hervo, D. Picard, J. Pichon et al., Investigation of nucleation events vertical extent: A long term study at two different altitude sites, Atmos. Chem. Phys, vol.11, pp.5625-5639, 2011.
URL : https://hal.archives-ouvertes.fr/insu-00649629

C. Rose, J. Boulon, M. Hervo, H. Holmgren, E. Asmi et al., Long-term observations of cluster ion concentration, sources and sinks in clear sky conditions at the high-altitude site of the Puy de Dôme, Atmos. Chem. Phys, vol.13, pp.11573-11594, 2013.

J. Boulon, K. Sellegri, H. Venzac, D. Picard, E. Weingartner et al., New particle formation and ultrafine charged aerosol climatology at a high altitude site in the Alps (Jungfraujoch, 3580 m a.s.l.; Switzerland), Atmos. Chem. Phys, vol.10, pp.9333-9349, 2010.
URL : https://hal.archives-ouvertes.fr/insu-00652864

C. Rose, B. Foucart, D. Picard, A. Colomb, J. Metzger et al., New particle formation in the active volcanic plume of the Piton de la Fournaise: Specific features from a long-term dataset, Atmos. Chem. Phys, 2019.

C. Rose, K. Sellegri, F. Velarde, I. Moreno, M. Ramonet et al., Frequent nucleation events at the high altitude station of Chacaltaya (5240 m a, Atmos. Environ, vol.102, pp.18-29, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01806671

M. Dal-maso, M. Kulmala, I. Riipinen, R. Wagner, T. Hussein et al., Formation and growth of fresh atmospheric aerosols: Eight years of aerosol size distribution data from SMEAR II, Boreal Environ. Res, vol.10, pp.323-336, 2005.

A. Hirsikko, T. Bergman, L. Laakso, M. Dal-maso, I. Riipinen et al., Identification and classification of the formation of intermediate ions measured in boreal forest, Atmos. Chem. Phys, vol.7, pp.201-210, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00302137

M. Vana, M. Ehn, T. Petäjä, H. Vuollekoski, P. Aalto et al., Characteristic features of air ions at Mace Head on the west coast of Ireland, Atmos. Res, vol.90, pp.278-286, 2008.

T. Yli-juuti, I. Riipinen, P. P. Aalto, T. Nieminen, W. Maenhaut et al., Characteristics of new particle formation events and cluster ions at Kpuszta, Hungary. Boreal Environ. Res, vol.14, pp.683-698, 2009.

A. Hirsikko, L. Laakso, U. Horrak, P. P. Aalto, V. Kerminen et al., Annual and size dependent variation of growth rates and ion concentrations in boreal forest, Boreal Environ. Res, vol.10, p.357, 2005.

H. Tammet and M. Kulmala, Simulation tool for atmospheric aerosol nucleation bursts, J. Aerosol Sci, vol.36, pp.173-196, 2005.

K. E. Lehtinen, M. Maso, M. Kulmala, and V. Kerminen, Estimating nucleation rates from apparent particle formation rates and vice versa: Revised formulation of the Kerminen-Kulmala equation, J. Aerosol Sci, vol.38, pp.988-994, 2007.

A. G. Hallar, D. H. Lowenthal, G. Chirokova, R. D. Borys, and C. Wiedinmyer, Persistent daily new particle formation at a mountain-top location, Atmos. Environ, vol.45, pp.4111-4115, 2011.

M. I. García, S. Rodríguez, Y. González, and R. D. García, Climatology of new particle formation at Izaña mountain GAW observatory in the subtropical North Atlantic, Atmos. Chem. Phys, vol.14, pp.3865-3881, 2014.

K. Neitola, E. Asmi, M. Komppula, A. Hyvärinen, T. Raatikainen et al., New particle formation infrequently observed in Himalayan foothills-Why?, Atmos. Chem. Phys, vol.11, pp.8447-8458, 2011.

A. Minikin, A. Petzold, J. Ström, R. Krejci, M. Seifert et al., Aircraft observations of the upper tropospheric fine particle aerosol in the northern and southern hemispheres at midlatitudes, Geophys. Res. Lett, vol.30, 1503.

H. E. Manninen, T. Nieminen, E. Asmi, S. Gagné, S. Häkkinen et al., EUCAARI ion spectrometer measurements at 12 European sites-Analysis of new particle formation events, Atmos. Chem. Phys, vol.10, pp.7907-7927, 2010.
URL : https://hal.archives-ouvertes.fr/insu-00653508

A. G. Hallar, R. Petersen, I. B. Mccubbin, D. Lowenthal, S. Lee et al., Climatology of New Particle Formation and Corresponding Precursors at Storm Peak Laboratory, Aerosol Air Qual. Res, vol.16, pp.816-826, 2016.

G. Lv, X. Sui, J. Chen, R. Jayaratne, and A. Mellouki, Investigation of new particle formation at the summit of Mt. Tai, China, Atmos. Chem. Phys, vol.18, pp.2243-2258, 2018.

J. R. Weber, P. H. Mcmurry, R. L. Mauldin, D. J. Iii;-tanner, F. L. Eisele et al., New particle formation in the remote troposphere: A comparison of observations at various sites, Geophys. Res. Lett, vol.26, pp.307-310, 1999.

J. R. Weber, P. H. Mcmurry, F. L. Eisele, and D. J. Tanner, Measurements ofexpected nucleation precursors species and 3-500 nm diameter particles at Mauna Loa, Hawaii. J. Atmos. Sci, vol.52, pp.2242-2257, 1995.

R. L. Modini, Z. D. Ristovski, G. R. Johnson, C. He, N. Surawski et al., New particle formation and growth at a remote, sub-tropical coastal location, Atmos. Chem. Phys, vol.9, pp.7607-7621, 2009.

K. Iida, M. R. Stolzenburg, P. H. Mcmurry, and J. N. Smith, Estimating nanoparticle growth rates from size-dependent charged fractions: Analysis of new particle formation events in Mexico City, J. Geophys. Res. Atmos, vol.113, 2008.

K. D. Perry and P. V. Hobbs, Further evidence for particle nucleation in clean air adjacent to marine cumulus clouds, J. Geophys. Res, vol.99, pp.22803-22818, 1994.

A. Keil and M. Wendisch, Bursts of Aitken mode and ultrafine particles observed at the top of continental boundary layer clouds, J. Aerosol Sci, vol.32, pp.649-660, 2001.

S. Mirme, A. Mirme, A. Minikin, A. Petzold, U. Horrak et al., Atmospheric sub-3 nm particles at high altitudes, Atmos. Chem. Phys, vol.10, pp.437-451, 2010.

L. Laakso, T. Petäjä, K. E. Lehtinen, M. Kulmala, J. Paatero et al., Ion production rate in a boreal forest based on ion, particle and radiation measurements, Atmos. Chem. Phys, vol.4, pp.3947-3973, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00301348

E. R. Lovejoy, J. Curtius, and K. D. Froyd, Atmospheric ion induced nucleation of sulfuric acid and water, J. Geophys. Res, vol.109, 2004.

A. Luts, T. Parts, and M. Vana, New aerosol particle formation via certain ion driven processes, Atmos. Res, vol.82, pp.547-553, 2006.

J. Kazil, R. G. Harrison, and E. R. Lovejoy, Tropospheric New Particle Formation and the Role of Ions, Space Sci. Rev, vol.137, pp.241-255, 2008.

T. Nieminen, P. Paasonen, H. E. Manninen, K. Sellegri, V. Kerminen et al., Parameterization of ion-induced nucleation rates based on ambient observations, Atmos. Chem. Phys, vol.11, pp.3393-3402, 2011.

F. Yu, From molecular clusters to nanoparticles: Second-generation ion-mediated nucleation model, Atmos. Chem. Phys, vol.6, pp.5193-5211, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00296076

F. Yu, Z. Wang, G. Luo, and R. Turco, Ion-mediated nucleation as an important global source of tropospheric aerosols, Atmos. Chem. Phys, vol.8, pp.2537-2554, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00296546

, Atmosphere, vol.10, pp.493-518, 2019.

J. Kirkby, J. Curtius, J. Almeida, E. Dunne, J. Duplissy et al., Role of sulphuric acid, ammonia and galactic cosmic rays in atmospheric aérosol nucleation, Nat. Lett, vol.476, 2011.

J. Kirkby, J. Duplissy, K. Sengupta, C. Frege, H. Gordon et al., Ion-induced nucleation of pure biogenic particles?, Nature, vol.533, pp.521-526, 2016.

R. Wagner, Y. Chao, K. Lehtipalo, J. Duplissy, T. Nieminen et al., The role of ions in new particle formation, Atmos. Chem. Phys, vol.17, pp.15181-15197, 2017.

L. Laakso, A. Hirsikko, T. Grönholm, M. Kulmala, A. Luts et al., Waterfalls as sources of small charged aerosol particles, Atmos. Chem. Phys, vol.7, pp.2271-2275, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00296214

R. E. Dickinson, Solar variability and the lower atmosphere, Bull. Am. Meteorol. Soc, vol.56, pp.1240-1248, 1975.

N. D. Marsh and H. Svensmark, Low Cloud Properties Influenced by Cosmic Rays, Phys. Rev. Lett, vol.85, 2000.

N. Marsh and H. Svensmark, Galactic cosmic ray and El Niño-Southern Oscillation trends in International Satellite Cloud Climatology Project D2 low-cloud properties, J. Geophys. Res, vol.108, p.4195, 2003.

T. Sloan and A. W. Wolfendale, Testing the proposed causal link between cosmic rays and cloud cover, Environ. Res. Lett, 2008.

A. Eichler, S. Olivier, K. Henderson, A. Laube, J. Beer et al., Temperature response in the Altai region lags solar forcing, Geophys. Res. Lett, 2009.

U. Horrak, P. P. Aalto, J. Salm, K. Komsaare, H. Tammet et al., Characterization of positive air ions in boreal air at the HyytiälÄ SMEAR station, Atmos. Chem. Phys, vol.7, pp.9465-9517, 2007.

A. Mishev and E. Hristova, Gamma Background Measurements at BEO Moussala, Institute for Nuclear Research and Nuclear Energy, Bulg. Acad. Sci, vol.2011, pp.1-18

C. Rose, K. Sellegri, E. Asmi, M. Hervo, E. Freney et al., Observation of neutral clusters during particle formation in the free troposphere, Atmos. Chem. Phys, vol.15, pp.3413-3428, 2015.

L. Pirjola, M. Kulmala, M. Wilck, A. Bischoff, F. Stratmann et al., Formation of sulphuric acid aerosols and cloud condensation nuclei: An expression for significant nucleation and model comparison, J. Aerosol Sci, vol.30, pp.1079-1094, 1999.

V. A. Lanz, A. S. Prévôt, M. R. Alfarra, S. Weimer, C. Mohr et al., Characterization of aerosol chemical composition with aerosol mass spectrometry in Central Europe: An overview, Atmos. Chem. Phys, vol.10, pp.10453-10471, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00552876

L. Sogacheva, M. Dal-maso, V. Kerminen, and M. Kulmala, Probability of nucleation events and aerosol particle concentration in different air mass types arriving at Hyytiälä, Southern Finland, based on back trajectories analysis, Boreal Environ. Res, vol.10, pp.479-491, 2005.

L. Dada, P. Paasonen, T. Nieminen, S. Buenrostro-mazon, J. Kontkanen et al., Long-term analysis of clear-sky new particle formation events and nonevents in Hyytiälä, Atmos. Chem. Phys, vol.17, pp.6227-6241, 2017.

K. Sellegri, P. Laj, H. Venzac, J. Boulon, D. Picard et al., Seasonal variations of aerosol size distributions based on long-term measurements at the high altitude Himalayan site of Nepal Climate Observatory-Pyramid (5079 m), Atmos. Chem. Phys, vol.10, pp.10679-10690, 2010.
URL : https://hal.archives-ouvertes.fr/insu-00653765

A. Kiendler-scharr, J. Wildt, M. Dal-maso, T. Hohaus, E. Kleist et al., New particle formation in forests inhibited by isoprene emissions, Nature, vol.461, pp.381-384, 2009.

E. Freney, K. Sellegri, M. Chrit, K. Adachi, J. Brito et al., Aerosol composition and the contribution of SOA formation over Mediterranean forests, Atmos. Chem. Phys, vol.18, pp.7041-7056, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01806752

T. Petäjä, R. L. Mauldin, E. Iii;-kosciuch, J. Mcgrath, T. Nieminen et al., Sulfuric acid and OH concentrations in a boreal forest site, Atmos. Chem. Phys, vol.9, pp.7435-7448, 2009.

, Atmosphere, vol.10, pp.493-519, 2019.

C. Nishita, K. Osada, M. Kido, K. Matsunaga, and Y. Iwasaka, Nucleation mode particles in upslope valley winds at Mount Norikura, Japan: Implications for the vertical extent of new particle formation events in the lower troposphere, J. Geophys. Res, vol.113, 2008.

B. Wehner, H. Siebert, A. Ansmann, F. Ditas, P. Seifert et al., Observations of turbulence-induced new particle formation in the residual layer, Atmos. Chem. Phys, vol.10, pp.4319-4330, 2010.

H. Lihavainen, V. Kerminen, M. Komppula, J. Hatakka, V. Aal-tonen et al., Prodution of "potential" cloud condensation nuclei production associated with atmo-spheric new-particle formation in northern Finland, J. Geophys. Res, vol.108, p.4782, 2003.

V. Kerminen, M. Paramonov, T. Anttila, I. Riipinen, C. Fountoukis et al., Cloud condensation nuclei production associated with atmospheric nucleation: A synthesis based on existing literature and new results, Atmos. Chem. Phys, vol.12, pp.12037-12059, 2012.

L. Laakso, J. Merikanto, V. Vakkari, H. Laakso, M. Kulmala et al., Boundary layer nucleation as a source of new CCN in savannah environment, Atmos. Chem. Phys, vol.13, pp.1957-1972, 2013.

A. Farah, E. Freney, A. Chauvigné, J. L. Baray, C. Rose et al., Seasonal variation of aerosol size distribution data at the puy de Dôme station

T. Yli-juuti, T. Nieminen, A. Hirsikko, P. P. Aalto, E. Asmi et al., Growth rates of nucleation mode particles in Hyytiälä during 2003?2009: Variation with particle size, season, data analysis method and ambient conditions, Atmos. Chem. Phys, vol.11, pp.12865-12886, 2011.

T. Suni, M. Kulmala, A. Hirsikko, T. Bergman, L. Laakso et al., Formation and characteristics of ions and charged aerosol particles in a native Australian Eucalypt forest, Atmos. Chem. Phys, vol.8, pp.129-139, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00302979

A. Virkkula, A. Hirsikko, M. Vana, P. P. Aalto, R. Hillamo et al., Charged particle size distributions and analysis of particle formation events at the Finnish antarctic research station aboa, Boreal Environ. Res, vol.12, pp.397-408, 2007.

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