A. Afchine, C. Rolf, A. Costa, N. Spelten, M. Riese et al., Ice particle sampling from aircraft ? influence of the probing position on the ice water content, Atmospheric Measurement Techniques, vol.11, issue.7, pp.4015-4031, 2018.

S. Bacer, S. C. Sullivan, V. A. Karydis, D. Barahona, M. Krämer et al., Implementation of a comprehensive ice crystal formation parameterization for cirrus and mixed-phase clouds in the EMAC model (based on MESSy 2.53), Geosci. Model Dev, vol.11, pp.4021-4041, 2018.

D. Baumgardner, H. Jonsson, W. Dawson, D. O'connor, N. et al., The cloud, aerosol and precipitation spectrometer (CAPS): A new instrument for cloud investigations, Atmos. Res, pp.251-264, 2001.

D. Baumgardner, S. J. Abel, D. Axisa, R. Cotton, J. Crosier et al., Cloud Ice Properties: In Situ Measurement Challenges, Meteorological Monographs, vol.58, pp.9.1-9.23, 2017.

O. Boucher, D. Randall, P. Artaxo, C. Bretherton, G. Feingold et al., Clouds and aerosols, Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, 2013.

A. W. Brewer, Clouds and Aerosols, Climate Change 2013 - The Physical Science Basis, vol.75, pp.571-658

B. Buchholz, K. Smit, H. Ebert, and V. , Validation of an extractive, airborne, compact TDL spectrometer for atmospheric humidity sensing by blind intercomparison, Appl. Phys. B, vol.110, pp.249-262, 2013.

J. R. Campbell, S. Lolli, J. R. Lewis, Y. Gu, and E. J. Welton, Daytime Cirrus Cloud Top-of-the-Atmosphere Radiative Forcing Properties at a Midlatitude Site and Their Global Consequences, Journal of Applied Meteorology and Climatology, vol.55, issue.8, pp.1667-1679, 2016.

A. Costa, J. Meyer, A. Afchine, A. Luebke, G. Günther et al., Classification of Arctic, midlatitude and tropical clouds in the mixed-phase temperature regime, Atmos. Chem. Phys, vol.17, pp.12219-12238, 2017.

J. Delanoë, A. Protat, J. Testud, D. Bouniol, A. J. Heymsfield et al., Statistical properties of the normalized ice particle size distribution, J. Geophys. Res.-Atmos, vol.110, pp.4204-4227, 2005.

J. M. Delanoë, A. J. Heymsfield, A. Protat, A. Bansemer, and R. J. Hogan, Statistical properties of the normalized ice particle size distribution, Journal of Geophysical Research, vol.110, issue.D10, pp.4204-4227, 2005.

T. Dinh, A. Podglajen, A. Hertzog, B. Legras, and R. Plougonven, Effect of gravity wave temperature fluctuations on homogeneous ice nucleation in the tropical tropopause layer, Atmos, Chem. Phys, vol.16, pp.35-46, 2016.

D. W. Fahey, R. Gao, O. Möhler, H. Saathoff, C. Schiller et al., The AquaVIT-1 intercomparison of atmospheric water vapor measurement techniques, vol.7, pp.3177-3213, 2014.
URL : https://hal.archives-ouvertes.fr/hal-00971815

F. Finger, F. Werner, M. Klingebiel, A. Ehrlich, E. Jäkel et al., Spectral optical layer properties of cirrus from collocated airborne measurements and simulations, Atmos. Chem. Phys, vol.16, pp.7681-7693, 2016.

Q. Fu and K. Liou, Parameterization of the Radiative Properties of Cirrus Clouds, J. Atmos. Sci, vol.50, 1993.

S. Fueglistaler, A. E. Dessler, T. J. Dunkerton, I. Folkins, Q. Fu et al., Tropical tropopause layer, Rev. Geophys, vol.47, pp.1-31, 2009.

B. Gasparini and U. Lohmann, Why cirrus cloud seeding cannot substantially cool the planet, J. Geophys. Res.-Atmos, vol.121, pp.4877-4893, 2016.

B. Gasparini and U. Lohmann, Why cirrus cloud seeding cannot substantially cool the planet, Journal of Geophysical Research: Atmospheres, vol.121, issue.9, pp.4877-4893, 2016.

E. Gryspeerdt, O. Sourdeval, J. Quaas, J. Delanoë, M. Krämer et al., Ice crystal number concentration estimates from lidar-radar satellite remote sensing -Part 2: Controls on the ice crystal number concentration, Atmos. Chem. Phys, vol.18, pp.14351-14370, 2018.
URL : https://hal.archives-ouvertes.fr/insu-01756056

A. Heymsfield, M. Krämer, A. Luebke, P. Brown, D. Cziczo et al., Ice Formation and Evolution in Clouds and Precipitation: Measurement and Modeling Challenges, chap. 2: Cirrus Clouds, vol.58, 2017.

A. J. Heymsfield, M. Krämer, A. Luebke, P. Brown, D. J. Cziczo et al., Cirrus Clouds, Meteorological Monographs, vol.58, pp.2.1-2.26, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01890420

J. R. Holton, P. H. Haynes, M. E. Mcintyre, A. R. Douglass, R. B. Rood et al., Stratospheretroposphere exchange, Rev. Geophys, vol.33, pp.403-439, 1995.

E. Jensen and L. Pfister, Transport and freeze-drying in the tropical tropopause layer, J. Geophys. Res, vol.109, p.22017, 2004.

E. Jensen, G. Diskin, P. Lawson, S. Lance, T. Bui et al., Transport and freeze-drying in the tropical tropopause layer, Journal of Geophysical Research, vol.109, issue.D2, pp.2041-2046, 2004.

E. J. Jensen, G. Diskin, R. P. Lawson, S. Lance, T. P. Bui et al., Ice nucleation and dehydration in the Tropical Tropopause Layer, Proceedings of the National Academy of Sciences, vol.110, issue.6, pp.2041-2046, 2013.

E. J. Jensen, R. P. Lawson, J. W. Bergman, L. Pfister, T. P. Bui et al., Physical processes controlling ice concentrations in synoptically forced, midlatitude cirrus, Journal of Geophysical Research: Atmospheres, vol.118, issue.11, pp.5348-5360, 2013.

E. J. Jensen and A. S. Ackerman, Homogeneous aerosol freezing in the tops of high-altitude tropical cumulonimbus clouds, Geophysical Research Letters, vol.33, issue.8, pp.1407-1413, 2006.

E. J. Jensen, A. S. Ackerman, and J. A. Smith, Can overshooting convection dehydrate the tropical tropopause layer?, Journal of Geophysical Research, vol.112, issue.D11, pp.5519-5537, 2007.

E. J. Jensen, P. Lawson, B. Baker, B. Pilson, Q. Mo et al., On the importance of small ice crystals in tropical anvil cirrus, Atmospheric Chemistry and Physics, vol.9, issue.15, pp.5519-5537, 2009.

E. J. Jensen, L. Pfister, and T. P. Bui, Physical processes controlling ice concentrations in cold cirrus near the tropical tropopause, Journal of Geophysical Research: Atmospheres, vol.117, issue.D11, pp.n/a-n/a, 2012.

E. J. Jensen, L. Pfister, D. E. Jordan, T. V. Bui, R. Ueyama et al., The NASA Airborne Tropical Tropopause Experiment: High-Altitude Aircraft Measurements in the Tropical Western Pacific, Bulletin of the American Meteorological Society, vol.98, issue.1, pp.129-143, 2017.

H. M. Jones, J. Haywood, F. Marenco, D. O'sullivan, J. Meyer et al., A methodology for in-situ and remote sensing of microphysical and radiative properties of contrails as they evolve into cirrus, Atmos, Chem. Phys, vol.12, pp.8157-8175, 2012.

H. Joos, Warm Conveyor Belts and Their Role for Cloud Radiative Forcing in the Extratropical Storm Tracks, J. Climate, vol.32, pp.5325-5343, 2019.

H. Joos, P. Spichtinger, P. Reutter, and F. Fusina, Warm Conveyor Belts and Their Role for Cloud Radiative Forcing in the Extratropical Storm Tracks, Journal of Climate, vol.32, issue.16, pp.5325-5343, 2019.

B. Kärcher and U. Lohmann, A parameterization of cirrus cloud formation: homogeneous freezing of supercooled aerosols, J. Geophys. Res, vol.107, pp.7433-7462, 2002.

S. Kaufmann, C. Voigt, R. Heller, T. Jurkat-witschas, M. Krämer et al., Intercomparison of midlatitude tropospheric and lower-stratospheric water vapor measurements and comparison to ECMWF humidity data, Atmospheric Chemistry and Physics, vol.18, issue.22, pp.16729-16745, 2018.

E. Kienast-sjögren, C. Rolf, P. Seifert, U. K. Krieger, B. P. Luo et al., Climatological and radiative properties of midlatitude cirrus clouds derived by automatic evaluation of lidar measurements, Atmospheric Chemistry and Physics, vol.16, issue.12, pp.7605-7621, 2016.

A. Korolev, Limitations of the Wegener-Bergeron-Findeisen Mechanism in the Evolution of Mixed-Phase Clouds, J. Atmos. Sci, vol.64, pp.3372-3375, 2007.

A. Korolev and P. R. Field, Limitations of the Wegener?Bergeron?Findeisen Mechanism in the Evolution of Mixed-Phase Clouds, Journal of the Atmospheric Sciences, vol.64, issue.9, pp.3372-3375, 2007.

M. Krämer, C. Schiller, A. Afchine, R. Bauer, I. Gensch et al., Ice supersaturations and cirrus cloud crystal numbers, Atmos. Chem. Phys, vol.9, pp.3505-3522, 2009.

M. Krämer, C. Schiller, A. Afchine, R. Bauer, I. Gensch et al., Ice supersaturations and cirrus cloud crystal numbers, Atmospheric Chemistry and Physics, vol.9, issue.11, pp.3505-3522, 2009.

M. Krämer, C. Rolf, A. Luebke, A. Afchine, N. Spelten et al., A microphysics guide to cirrus clouds ? Part 1: Cirrus types, Atmospheric Chemistry and Physics, vol.16, issue.5, pp.3463-3483, 2016.

M. Kübbeler, M. Hildebrandt, J. Meyer, C. Schiller, T. H. Hamburger et al., Thin and subvisible cirrus and contrails in a subsaturated environment, Atmospheric Chemistry and Physics, vol.11, issue.12, pp.5853-5865, 2011.

R. Lawson, D. O'connor, P. Zmarzly, K. Weaver, B. Baker et al., The 2D-S (Stereo) probe: Design and preliminary tests of a new airborne, high-speed, high-resolution particle Imaging probe, J. Atmos. Ocean. Tech, vol.23, pp.1462-1477, 2006.

R. P. Lawson, S. Woods, E. Jensen, E. Erfani, C. Gurganus et al., A Review of Ice Particle Shapes in Cirrus formed In Situ and in Anvils, Journal of Geophysical Research: Atmospheres, vol.124, issue.17-18, pp.10049-10090, 2019.

A. E. Luebke, L. M. Avallone, C. Schiller, J. Meyer, C. Rolf et al., Ice water content of Arctic, midlatitude, and tropical cirrus -Part 2: Extension of the database and new statistical analysis, Atmos. Chem. Phys, vol.13, pp.6447-6459, 2013.

A. E. Luebke, L. M. Avallone, C. Schiller, J. Meyer, C. Rolf et al., Ice water content of Arctic, midlatitude, and tropical cirrus ? Part 2: Extension of the database and new statistical analysis, Atmospheric Chemistry and Physics, vol.13, issue.13, pp.6447-6459, 2013.

R. May, Open-path, near-infrared tunable diode laser spectrometer for atmospheric measurements of H2O, Journal of Geophysical Research: Atmospheres, vol.103, issue.D15, pp.19161-19172, 1998.

G. Mcfarquhar, U. Junshik, M. Freer, D. Baumgardner, G. Kok et al., The Importance of Small Ice Crystals to Cirrus Properties: Observations from the Tropical Warm Pool International Cloud Experiment (TWP-ICE), Geophys. Res. Lett, vol.34, p.13803, 2007.

J. Meyer, Ice Crystal Measurements with the New Particle Spectrometer NIXE-CAPS, Schriften des Forschungszentrums Jülich. Reihe Energie und Umwelt/Energy and Environment, vol.160, p.9783893368402, 2012.

J. Meyer, C. Rolf, C. Schiller, S. Rohs, N. Spelten et al., Two decades of water vapor measurements with the FISH fluorescence hygrometer: a review, Atmospheric Chemistry and Physics, vol.15, issue.14, pp.8521-8538, 2015.

D. L. Mitchell, A. Garnier, J. Pelon, and E. Erfani, CALIPSO (IIR-CALIOP) retrievals of cirrus cloud iceparticle concentrations, Atmos. Chem. Phys, vol.18, pp.17325-17354, 2018.
URL : https://hal.archives-ouvertes.fr/insu-01818499

A. Muhlbauer, T. Ackerman, J. Comstock, G. Diskin, S. Evans et al., Impact of largescale dynamics on the microphysical properties of midlatitude cirrus, J. Geophys. Res.-Atmos, vol.119, pp.3976-3996, 2014.

D. M. Murphy, L. L. Pan, K. P. Bowman, E. L. Atlas, S. C. Wofsy et al., Rare temperature histories and cirrus ice number density in a parcel and a one-dimensional model, Atmospheric Chemistry and Physics, vol.14, issue.23, pp.13013-13022, 2014.

L. L. Pan, K. P. Bowman, E. L. Atlas, S. C. Wofsy, F. Zhang et al., The Stratosphere?Troposphere Analyses of Regional Transport 2008 Experiment, Bulletin of the American Meteorological Society, vol.91, issue.3, pp.327-342, 2010.

L. L. Pan, E. L. Atlas, R. J. Salawitch, S. B. Honomichl, J. F. Bresch et al., The Convective Transport of Active Species in the Tropics (CONTRAST) Experiment, Bulletin of the American Meteorological Society, vol.98, issue.1, pp.106-128, 2017.

J. E. Penner, C. Zhou, A. Garnier, and D. L. Mitchell, Anthropogenic Aerosol Indirect Effects in Cirrus Clouds, J. Geophys. Res.-Atmos, vol.123, pp.11652-11677, 2018.

T. Peter, C. Marcolli, P. Spichtinger, T. Corti, M. Baker et al., When dry air is too humid, Science, vol.314, pp.1399-1401, 2006.

A. Petzold, M. Krämer, P. Neis, C. Rolf, S. Rohs et al., Upper tropospheric water vapour and its interaction with cirrus clouds as seen from IAGOS long-term routine in situ observations, Faraday Discussions, vol.200, pp.229-249, 2017.

F. Ploeger, G. Günther, P. Konopka, S. Fueglistaler, R. Müller et al., Horizontal water vapor transport in the lower stratosphere from subtropics to high latitudes during boreal summer, J. Geophys. Res.-Atmos, vol.118, pp.8111-8127, 2013.

A. Podglajen, T. P. Bui, J. M. Dean-day, L. Pfister, E. J. Jensen et al., Small-Scale Wind Fluctuations in the Tropical Tropopause Layer from Aircraft Measurements: Occurrence, Nature, and Impact on Vertical Mixing, Journal of the Atmospheric Sciences, vol.74, issue.11, pp.3847-3869, 2017.

M. Righi, J. Hendricks, U. Lohmann, C. G. Beer, V. Hahn et al., Coupling aerosols to (cirrus) clouds in the global EMAC-MADE3 aerosol-climate model, Geosci. Model Dev, vol.13, pp.1635-1661, 2020.

C. Rolf, B. Vogel, P. Hoor, A. Afchine, G. Günther et al., Water vapor increase in the lower stratosphere of the Northern Hemisphere due to the Asian monsoon anticyclone observed during the TACTS/ESMVal campaigns, Atmos. Chem. Phys, vol.18, pp.2973-2983, 2018.

A. W. Rollins, T. D. Thornberry, R. S. Gao, J. B. Smith, D. S. Sayres et al., Evaluation of UT/LS hygrometer accuracy by intercomparison during the NASA MACPEX mission, J. Geophys. Res, vol.119, 1915.

A. W. Rollins, T. D. Thornberry, R. S. Gao, J. B. Smith, D. S. Sayres et al., Evaluation of UT/LS hygrometer accuracy by intercomparison during the NASA MACPEX mission, Journal of Geophysical Research: Atmospheres, vol.119, issue.4, pp.1915-1935, 2014.

K. Sassen, Z. Wang, and D. Liu, Global distribution of cirrus clouds from CloudSat/Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) measurements, J. Geophys. Res.-Atmos, vol.113, 2008.

C. Schiller, M. Krämer, A. Afchine, N. Spelten, and N. Sitnikov, Ice water content in Arctic, midlatitude and tropical cirrus, J. Geophys. Res, vol.113, p.24208, 2008.

C. Schiller, J. Grooß, P. Konopka, F. Plöger, F. H. Silva-dos-santos et al., Hydration and dehydration at the tropical tropopause, Atmospheric Chemistry and Physics, vol.9, issue.24, pp.9647-9660, 2009.

M. Schoeberl, E. Jensen, L. Pfister, R. Ueyama, T. Wang et al., Water Vapor, Clouds, and Saturation in the Tropical Tropopause Layer, J. Geophys. Res.-Atmos, vol.124, pp.3985-4003, 2019.

M. R. Schoeberl, E. J. Jensen, L. Pfister, R. Ueyama, T. Wang et al., Water Vapor, Clouds, and Saturation in the Tropical Tropopause Layer, Journal of Geophysical Research: Atmospheres, vol.124, issue.7, pp.3984-4003, 2019.

N. Sitnikov, V. Yushkov, A. Afchine, L. Korshunov, V. Astakhov et al., The FLASH Instrument for Water Vapor Measurements on Board the High-Altitude Airplane, Instrum. Exp. Tech, vol.50, pp.113-121, 2007.

J. B. Smith, E. J. Hintsa, N. T. Allen, R. M. Stimpfle, and J. G. Anderson, Mechanisms for midlatitude ozone loss: Heterogeneous chemistry in the lowermost stratosphere?, Journal of Geophysical Research: Atmospheres, vol.106, issue.D1, pp.1297-1309, 2001.

S. Solomon, K. H. Rosenlof, R. W. Portmann, J. S. Daniel, S. M. Davis et al., Contributions of Stratospheric Water Vapor to Decadal Changes in the Rate of Global Warming, Science, vol.327, pp.1219-1223, 2010.

O. Sourdeval, E. Gryspeerdt, M. Krämer, T. Goren, J. Delanoë et al., Ice crystal number concentration estimates from lidar-radar satellite remote sensing -Part 1: Method and evaluation, Atmos. Chem. Phys, vol.18, pp.14327-14350, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01957592

O. Sourdeval, E. Gryspeerdt, M. Krämer, T. Goren, J. Delanoë et al., Ice crystal number concentration estimates from lidar?radar satellite remote sensing ? Part 1: Method and evaluation, Atmospheric Chemistry and Physics, vol.18, issue.19, pp.14327-14350, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01957592

P. Spichtinger and D. J. Cziczo, Impact of heterogeneous ice nuclei on homogeneous freezing events, J. Geophys. Res, vol.115, p.14208, 2010.

P. Spichtinger and D. J. Cziczo, Impact of heterogeneous ice nuclei on homogeneous freezing events in cirrus clouds, Journal of Geophysical Research, vol.115, issue.D14, pp.9801-9818, 2010.

E. J. Spreitzer, M. P. Marschalik, and P. Spichtinger, Subvisible cirrus clouds -a dynamical system approach, Nonlin. Processes Geophys, vol.24, pp.307-328, 2017.

T. Thornberry, A. Rollins, M. Avery, S. Woods, R. Lawson et al., Ice water content-extinction relationships and effective diameter for TTL cirrus derived from in situ measurements during ATTREX, J. Geophys. Res, vol.122, pp.4494-4507, 2014.

T. D. Thornberry, A. W. Rollins, M. A. Avery, S. Woods, R. P. Lawson et al., Ice water content-extinction relationships and effective diameter for TTL cirrus derived from in situ measurements during ATTREX 2014, Journal of Geophysical Research: Atmospheres, vol.122, issue.8, pp.4494-4507, 2017.

R. Ueyama, E. J. Jensen, and L. Pfister, Convective Influence on the Humidity and Clouds in the Tropical Tropopause Layer During Boreal Summer, Journal of Geophysical Research: Atmospheres, vol.123, pp.7576-7593, 2018.

B. Urbanek, S. Groß, A. Schäfler, and M. Wirth, Determining stages of cirrus evolution: a cloud classification scheme, Atmos, Meas. Tech, vol.10, pp.1653-1664, 2017.

B. Urbanek, S. Groß, A. Schäfler, and M. Wirth, Determining stages of cirrus evolution: a cloud classification scheme, Atmospheric Measurement Techniques, vol.10, issue.5, pp.1653-1664, 2017.

G. Vali, P. J. Demott, O. Möhler, and T. F. Whale, Technical Note: A proposal for ice nucleation terminology, Atmospheric Chemistry and Physics, vol.15, issue.18, pp.10263-10270, 2015.

B. Vogel, G. Günther, R. Müller, J. Grooß, A. Afchine et al., Longrange transport pathways of tropospheric source gases originating in Asia into the northern lower stratosphere during the Asian monsoon season, Atmos. Chem. Phys, vol.16, pp.15301-15325, 2012.

C. Voigt, U. Schumann, A. Minikin, A. Abdelmonem, A. Afchine et al., ML-Cirrus the airborne experiment on natural cirrus and contrail cirrus with the high-altitude long-range research aircraft HALO, B. Am. Meteorol. Soc, vol.98, pp.271-288, 2017.

C. J. Wall, J. R. Norris, B. Gasparini, W. L. Smith, J. Thieman et al., Observational Evidence that Radiative Heating Modifies the Life Cycle of Tropical Anvil Clouds, J. Geophys. Res, vol.33, pp.1-68, 2007.

M. Wendisch, U. Pöschl, M. O. Andreae, L. A. Machado, R. Albrecht et al., ACRIDICON?CHUVA Campaign: Studying Tropical Deep Convective Clouds and Precipitation over Amazonia Using the New German Research Aircraft HALO, Bulletin of the American Meteorological Society, vol.97, issue.10, pp.1885-1908, 2016.

H. Wernli, M. Boettcher, H. Joos, A. K. Miltenberger, and P. Spichtinger, A trajectory-based classification of ERA-Interim ice clouds in the region of the North Atlantic storm track, Geophys. Res. Lett, vol.43, pp.6657-6664, 2016.

V. Wolf, T. Kuhn, M. Milz, P. Voelger, M. Krämer et al., Arctic ice clouds over northern Sweden: microphysical properties studied with the Balloon-borne Ice Cloud particle Imager B-ICI, Atmos. Chem. Phys, vol.18, pp.17371-17386, 2018.

V. Wolf, T. Kuhn, M. Milz, P. Voelger, M. Krämer et al., Arctic ice clouds over northern Sweden: microphysical properties studied with the Balloon-borne Ice Cloud particle Imager B-ICI, Atmospheric Chemistry and Physics, vol.18, issue.23, pp.17371-17386, 2018.

S. Woods, R. P. Lawson, E. Jensen, T. P. Bui, T. Thornberry et al., Microphysical Properties of Tropical Tropopause Layer Cirrus, J. Geophys. Res.-Atmos, vol.123, pp.6053-6069, 2018.

Q. Yang, Q. Fu, and Y. Hu, Radiative impacts of clouds in the tropical tropopause layer, J. Geophys. Res.-Atmos, vol.115, 2010.

M. A. Zondlo, M. E. Paige, S. M. Massick, and J. A. Silver, Vertical cavity laser hygrometer for the National Science Foundation Gulfstream-V aircraft, J. Geophys. Res, vol.115, p.2309, 2010.