Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback

Rayleigh lidar in synergy with satellite observations (SSU and AMSU) allow insuring an efficient monitoring and showing that cooling has continued. New approach for trend detection has been developed allowing a better estimate of changes due to radiative forcing. Stratospheric Warmings and gravity w...

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Main Authors: Keckhut Philippe, Hauchecorne Alain, Funatsu Beatriz, Khaykin Serguey, Mze Nahouda, Claud Chantal, Angot Guillaume
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/201611913009
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author Keckhut Philippe
Hauchecorne Alain
Funatsu Beatriz
Khaykin Serguey
Mze Nahouda
Claud Chantal
Angot Guillaume
author_facet Keckhut Philippe
Hauchecorne Alain
Funatsu Beatriz
Khaykin Serguey
Mze Nahouda
Claud Chantal
Angot Guillaume
author_sort Keckhut Philippe
collection DOAJ
description Rayleigh lidar in synergy with satellite observations (SSU and AMSU) allow insuring an efficient monitoring and showing that cooling has continued. New approach for trend detection has been developed allowing a better estimate of changes due to radiative forcing. Stratospheric Warmings and gravity waves contribute to insure a dynamical feedback of the long-term changes.
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spelling doaj.art-d87b9d68a7f34f9096d1444176bc00722022-12-21T21:35:11ZengEDP SciencesEPJ Web of Conferences2100-014X2016-01-011191300910.1051/epjconf/201611913009epjconf_ilrc2016_13009Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical FeedbackKeckhut Philippe0Hauchecorne Alain1Funatsu Beatriz2Khaykin Serguey3Mze Nahouda4Claud Chantal5Angot Guillaume6LATMOS-IPSL, UVSQ, UPMC, CNRS/INSU, UMR 8190LATMOS-IPSL, UVSQ, UPMC, CNRS/INSU, UMR 8190LETG-Rennes COSTEL, CNRS UMR 6554LATMOS-IPSL, UVSQ, UPMC, CNRS/INSU, UMR 8190LATMOS-IPSL, UVSQ, UPMC, CNRS/INSU, UMR 8190Laboratoire de Météorologie Dynamique, CNRS UMR 8539, IPSL, Ecole PolytechniqueLATMOS-IPSL, UVSQ, UPMC, CNRS/INSU, UMR 8190Rayleigh lidar in synergy with satellite observations (SSU and AMSU) allow insuring an efficient monitoring and showing that cooling has continued. New approach for trend detection has been developed allowing a better estimate of changes due to radiative forcing. Stratospheric Warmings and gravity waves contribute to insure a dynamical feedback of the long-term changes.http://dx.doi.org/10.1051/epjconf/201611913009
spellingShingle Keckhut Philippe
Hauchecorne Alain
Funatsu Beatriz
Khaykin Serguey
Mze Nahouda
Claud Chantal
Angot Guillaume
Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback
EPJ Web of Conferences
title Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback
title_full Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback
title_fullStr Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback
title_full_unstemmed Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback
title_short Temperature Climatology with Rayleigh Lidar Above Observatory of Haute-Provence: Dynamical Feedback
title_sort temperature climatology with rayleigh lidar above observatory of haute provence dynamical feedback
url http://dx.doi.org/10.1051/epjconf/201611913009
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