Articles | Volume 19, issue 15
https://doi.org/10.5194/amt-19-5193-2026
https://doi.org/10.5194/amt-19-5193-2026
Research article
 | 
10 Aug 2026
Research article |  | 10 Aug 2026

Experimental determination of the lidar ratio for cirrus and polar stratospheric clouds at Dome C, Antarctica, using a Young inversion

Francesco Cairo, Luca Di Liberto, Alessandro Bracci, and Marcel Snels

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Interactive discussion

Status: closed

Comment types: AC – author | RC – referee | CC – community | EC – editor | CEC – chief editor | : Report abuse
  • RC1: 'Comment on egusphere-2026-652', Anonymous Referee #1, 18 Apr 2026
    • AC1: 'Reply on RC1', Francesco Cairo, 18 May 2026
  • RC2: 'Comment on egusphere-2026-652', Anonymous Referee #3, 28 Apr 2026
    • AC2: 'Reply on RC2', Francesco Cairo, 18 May 2026

Peer review completion

AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Francesco Cairo on behalf of the Authors (18 May 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Reconsider after major revisions (19 May 2026) by Simone Lolli
ED: Referee Nomination & Report Request started (19 May 2026) by Simone Lolli
RR by Anonymous Referee #3 (16 Jun 2026)
RR by Anonymous Referee #1 (17 Jun 2026)
ED: Publish subject to minor revisions (review by editor) (17 Jun 2026) by Simone Lolli
AR by Francesco Cairo on behalf of the Authors (23 Jun 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Publish as is (24 Jun 2026) by Simone Lolli
AR by Francesco Cairo on behalf of the Authors (25 Jun 2026)

Post-review adjustments

AA – Author's adjustment | EA – Editor approval
AA by Francesco Cairo on behalf of the Authors (17 Jul 2026)   Author's adjustment   Manuscript
EA: Adjustments approved (28 Jul 2026) by Simone Lolli
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Short summary
Using three years of laser observations above Dome C, Antarctica, we examined high clouds made of liquid droplets, nitric-acid particles, and ice crystals. We found clear differences in how these clouds scatter light, while ice-rich clouds were the most variable because they are often layered or mixed. The results provide more realistic inputs for satellite checks and climate calculations, improving estimates of how polar clouds affect sunlight, heat, and ozone loss.
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