Selected publications since 2016

  1. Titus, Z., M. Bonazzola, H. Chepfer, A. G. Feofilov, M.-L. Roussel, B. Witschas, and S. Bastin, 2026: Demonstrating Aeolus capability to observe wind–cloud interactions. Atmos. Chem. Phys., 26, 443–475. doi:10.5194/acp-26-443-2026

  2. Khaykin, S., M. Sicard, T. Leblanc, T. Sakai, N. Balugin, ..., A. G. Feofilov, ..., 2026: Global transport of stratospheric aerosol produced by Ruang eruption from EarthCARE ATLID, limb-viewing satellites and ground-based lidar observations. Atmos. Chem. Phys., 26, 607–622. doi:10.5194/acp-26-607-2026

  3. Titus, Z., M. Bonazzola, H. Chepfer, A. G. Feofilov, and M.-L. Roussel, 2025: Relationships between thin clouds, opaque clouds, and the tropical easterly jet over the Indian region observed with Aeolus. EGUsphere [preprint]. doi:10.5194/egusphere-2025-5335

  4. Chepfer, H., O. Chomette, A. Arouf, V. Noël, D. Winker, A. G. Feofilov, and A. Balava-Balzado, 2025: Variability and trends in cloud properties over 17 years from CALIPSO space lidar observations. J. Geophys. Res. Atmos., 130, e2025JD043764. doi:10.1029/2025JD043764

  5. Lohou, F., M. Lothon, S. Bastin, ..., A. G. Feofilov, ..., 2025: Model and observation for surface–atmosphere interactions over heterogeneous landscape: MOSAI project. J. Eur. Meteor. Soc., 3, 100019. doi:10.1016/j.jems.2025.100019

  6. Feofilov, A. G., H. Chepfer, V. Noël, and F. Szczap, 2023: Incorporating EarthCARE observations into a multi-lidar cloud climate record: the ATLID cloud climate product. Atmos. Meas. Tech., 16, 3363–3390. doi:10.5194/amt-16-3363-2023

  7. Bonazzola, M., H. Chepfer, P.-L. Ma, J. Quaas, D. M. Winker, A. G. Feofilov, and co-authors, 2023: Incorporation of aerosol into the COSPv2 satellite lidar simulator for climate model evaluation. Geosci. Model Dev., 16, 1359–1377. doi:10.5194/gmd-16-1359-2023

  8. Khaykin, S., A. Podglajen, F. Ploeger, ..., A. G. Feofilov, ..., 2022: Global perturbation of stratospheric water and aerosol burden by Hunga eruption. Commun. Earth Environ., 3, 316. doi:10.1038/s43247-022-00652-x

  9. Arouf, A., H. Chepfer, T. Vaillant de Guélis, M. Chiriaco, M. D. Shupe, ..., A. G. Feofilov, ..., 2022: The surface longwave cloud radiative effect derived from space lidar observations. Atmos. Meas. Tech., 15, 3893–3923. doi:10.5194/amt-15-3893-2022

  10. Feofilov, A. G., H. Chepfer, V. Noël, R. Guzman, C. Gindre, P.-L. Ma, and M. Chiriaco, 2022: Comparison of scattering ratio profiles retrieved from ALADIN/Aeolus and CALIOP/CALIPSO observations and preliminary estimates of cloud fraction profiles. Atmos. Meas. Tech., 15, 1055–1074. doi:10.5194/amt-15-1055-2022

  11. Perpina, M., V. Noël, H. Chepfer, R. Guzman, and A. G. Feofilov, 2021: Link between opaque cloud properties and atmospheric dynamics in observations and simulations of current climate in the tropics. J. Geophys. Res. Atmos., 126, e2020JD033899. doi:10.1029/2020JD033899

  12. Feofilov, A. G., and C. J. Stubenrauch, 2019: Diurnal variation of high-level clouds from the synergy of AIRS and IASI space-borne infrared sounders. Atmos. Chem. Phys., 19, 13957–13972. doi:10.5194/acp-19-13957-2019

  13. Dawkins, E., A. G. Feofilov, L. Rezac, A. A. Kutepov, D. Janches, J. Höffner, X. Chu, and co-authors, 2018: Validation of SABER v2.0 operational temperature data with ground-based lidars in the mesosphere–lower thermosphere region (75–105 km). J. Geophys. Res. Atmos., 123, 9916–9934. doi:10.1029/2018JD028742

  14. Stubenrauch, C. J., A. G. Feofilov, S. E. Protopapadaki, and R. Armante, 2017: Cloud climatologies from the infrared sounders AIRS and IASI: strengths and applications. Atmos. Chem. Phys., 17, 13625–13644. doi:10.5194/acp-17-13625-2017

  15. Protopapadaki, S. E., C. J. Stubenrauch, and A. G. Feofilov, 2017: Upper tropospheric cloud systems derived from IR sounders: properties of cirrus anvils in the tropics. Atmos. Chem. Phys., 17, 3845–3859. doi:10.5194/acp-17-3845-2017

Conference proceedings and book chapters

  • Feofilov, A. G., H. Chepfer, and V. Noël, 2026: Establishing a long-term cloud record from a combination of space-borne lidar observations. EPJ Web of Conferences, 362, 08004. doi:10.1051/epjconf/202636208004

  • Feofilov, A. G., H. Chepfer, V. Noël, and M. Hajiaghazadeh-Roodsari, 2024: Towards establishing a long-term cloud record from space-borne lidar observations. In: Space-Based Lidar Remote Sensing Techniques and Emerging Technologies, Springer Aerospace Technology, 57–72. doi:10.1007/978-3-031-53618-2_6