selected publications
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conference proceeding
- The Qanuikkat Siqinirmiut project - developing a research partnership to describe Inuit health in Southern Quebec. International Journal of Circumpolar Health. 2021
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journal article
- Evidence of a dual African and Australian biomass burning influence on the vertical distribution of aerosol and carbon monoxide over the southwest Indian Ocean basin in early 2020. Atmospheric Chemistry and Physics. 8031-8048. 2024
- Microphysical Simulation of the 2022 Hunga Volcano Eruption Using a Sectional Aerosol Model. Geophysical Research Letters. 2024
- Early Evolution of the Stratospheric Aerosol Plume Following the 2022 Hunga Tonga-Hunga Ha'apai Eruption: Lidar Observations From Reunion (21°S, 55°E). Geophysical Research Letters. 2023
- Global perturbation of stratospheric water and aerosol burden by the Hunga Tonga eruption: a 1-year aftermath 2023
- Aerosol Optical Properties and Types over Southern Africa and Reunion Island Determined from Ground-Based and Satellite Observations over a 13-Year Period (2008-2021). Remote Sensing. 2023
- Global perturbation of stratospheric water and aerosol burden by Hunga eruption. Communications Earth & Environment. 2022
- Early Evolution of the Hunga-Tonga Stratospheric Aerosol Plume observed by Lidar at La Réunion (21°S, 55°E) 2022
- Extreme temperature events monitored by Raman lidar: Consistency and complementarity with spaceborne observations and modelling. Meteorological Applications. 2022
- Aerosol Characterization of the Stratospheric Plume From the Volcanic Eruption at Hunga Tonga 15 January 2022. Geophysical Research Letters. 2022
- EUREC4A observations from the SAFIRE ATR42 aircraft. Earth System Science Data. 2021-2064. 2022
- Early evolution of the Hunga – Tonga Volcanic Plume from Lidar Observations at Reunion Island (Indian Ocean, 21°S, 55°E) 2022
- Remote-sensing of aerosol atmospheric rivers over the southwest Indian Ocean in September 2017: origins, evolution and impacts 2022
- Mesoscale spatio-temporal variability of airborne lidar-derived aerosol properties in the Barbados region during EUREC4 A. Atmospheric Chemistry and Physics. 1271-1292. 2022
- Mitigation of bias sources for atmospheric temperature and humidity in the mobile Raman Weather and Aerosol Lidar (WALI). Atmospheric Measurement Techniques. 7525-7544. 2021
- EUREC4A. Earth System Science Data. 4067-4119. 2021
- Transport and Variability of Tropospheric Ozone over Oceania and Southern Pacific during the 2019-20 Australian Bushfires. Remote Sensing. 2021
- Experimental investigation of the stable water isotope distribution in an Alpine lake environment (L-WAIVE). Atmospheric Chemistry and Physics. 10911-10937. 2021
- Significant sources of bias in temperature measurements by rotational Raman lidar, and mitigation in the French mobile system WALI 2021
- The lacustrine-water vapor isotope inventory experiment L-WAIVE 2020
- Trade-wind clouds and aerosols characterized by airborne horizontal lidar measurements during the EUREC4A field campaign. Earth System Science Data. 2919-2936. 2020
- Trade-wind clouds and aerosols characterized by airborne; horizontal lidar measurements during the EUREC<sup>4</sup>A field; campaign 2020
- Remote sensing of two exceptional winter aerosol pollution events and representativeness of ground-based measurements. Atmospheric Chemistry and Physics. 6749-6768. 2020
- Relative humidity fields in the Annecy Alpine valley observed by Ro-Vibrational Raman lidar in the framework of L-WAIVE 2020
- The L-WAIVE campaign over the Annecy lake: An analysis of water vapor variability in complex terrain 2020
- Top-down lidar characterization of exceptional dust transport event above the Annecy lake during L-WAIVE in June 2019 2020
- Evidence of the complexity of aerosol transport in the lower troposphere on the Namibian coast during AEROCLO-sA. Atmospheric Chemistry and Physics. 14979-15005. 2019
- Remote sensing of exceptional winter aerosol pollution events and representativeness of the surface – column relationship over Paris metropolitan area 2019
- Evidence of the complexity of aerosol transport in the lower; troposphere on the Namibian coast during AEROCLO-sA 2019