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17. Global perturbation of stratospheric water and aerosol burden by Hunga eruption

18. 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.

21. MAP-IO, an atmospheric and marine observatory program onboard Marion Dufresne over the Southern Ocean

22. ERORUN‐STAFOR: A collaborative observatory for the multidisciplinary study of the critical zone processes in a tropical volcanic watershed including a Tropical Montane Cloud Forest

23. ReNovRisk: a multidisciplinary programme to study the cyclonic risks in the South-West Indian Ocean

24. Multiwavelength, aerosol lidars at Maïdo supersite, Reunion Island, France: instruments description, data processing chain and quality assessment.

25. Radiative impact of the Hunga Tonga-Hunga Ha’apai stratospheric volcanic plume: role of aerosols and water vapor in the southern tropical Indian Ocean

27. 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

28. Measurement Report: Bio-physicochemistry of tropical clouds at Maïdo (Réunion Island, Indian Ocean): overview of results from the BIO-MAÏDO campaign

29. Supplementary material to "Measurement Report: Bio-physicochemistry of tropical clouds at Maïdo (Réunion Island, Indian Ocean): overview of results from the BIO-MAÏDO campaign"

31. Evidence of an Ozone Mini-Hole Structure in the Early Hunga Tonga Plume Above the Indian Ocean.

32. Aerosol characterization within the fresh and aged stratospheric plume from the Hunga Tonga eruption 15 January 2022

33. Bio-physicochemistry of tropical clouds at Maïdo (Réunion Island, Indian Ocean): overview of results from the BIO-MAÏDO campaign

35. 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.

37. Aerosol Characterization of the Stratospheric Plume From the Volcanic Eruption at Hunga Tonga 15 January 2022

38. Global perturbation of stratospheric water and aerosol burden by Hunga eruption

40. Esame delle strutture oculari con la lampada a fessura.

41. Early evolution of the Hunga – Tonga Volcanic Plume from Lidar. Observations at Reunion Island (Indian Ocean, 21°S, 55°E)

42. Aerosol characterization of the stratospheric plume from the volcanic eruption at Hunga Tonga January 15th 2022

45. Early evolution of the Hunga – Tonga Volcanic Plume from Lidar Observations at Reunion Island (Indian Ocean, 21°S, 55°E)

46. Variability of the Aerosol Content in the Tropical Lower Stratosphere from 2013 to 2019: Evidence of Volcanic Eruption Impacts

47. Two-year operation of the lidar1200: from fine-scale tropospheric structures to lower stratospheric water vapor detection

48. Transport and Variability of Tropospheric Ozone over Oceania and Southern Pacific during the 2019–20 Australian Bushfires

49. The impact of aerosol fluorescence on water vapor long-term monitoring by Raman lidar and the evaluation of a potential correction method.

50. Variability of the aerosol content in the tropical lower stratosphere from 2013 to 2019 as influenced by moderate volcanic eruptions

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