Observational indications of downward-propagating gravity waves in middle atmosphere lidar data (original) (raw)
Gravity waves in the middle atmosphere observed by Rayleigh lidar: 1. Case studies
A. Hauchecorne
Journal of Geophysical Research, 1991
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Gravity wave spectra in the middle atmosphere as observed by Rayleigh lidar
A. Hauchecorne
Geophysical Research Letters, 1990
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Lidar observations of middle atmospheric gravity wave activity over a low-latitude site (Gadanki, 13.5° N, 79.2° E)
Vishnu Prasanth P
Annales Geophysicae, 2006
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Gravity wave activity in the lower atmosphere: Seasonal and latitudinal variations
Robert Vincent
Journal of Geophysical Research, 1995
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Lidar observations of persistent gravity waves with periods of 3–10 h in the Antarctic middle and upper atmosphere at McMurdo (77.83°S, 166.67°E)
Brendan Roberts
Journal of Geophysical Research: Space Physics, 2016
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Gravity wave activity in the upper stratosphere and lower mesosphere observed with the Rayleigh lidar at Tsukuba, Japan
Nobuo Sugimoto
Geophysical Research Letters, 1994
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Measurements of gravity wave activity in the lower stratosphere by Doppler lidar
A. Hauchecorne
Journal of Geophysical Research, 2001
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Lidar observation of gravity and tidal waves in the stratosphere and mesosphere
Alain Hauchecorne
Journal of Geophysical Research, 1981
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Vertical structure of atmospheric gravity waves revealed by the wavelet analysis
Kaoru Sato
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Lidar observations of stratospheric gravity waves from 2011 to 2015 at McMurdo (77.84°S, 166.69°E), Antarctica: 1. Vertical wavelengths, periods, and frequency and vertical wave number spectra
Xinzhao Chu
Journal of Geophysical Research: Atmospheres, 2017
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Satellite observations of middle atmosphere–thermosphere vertical coupling by gravity waves
thai trinh
Annales Geophysicae, 2018
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Intra-annual variations of spectrally resolved gravity wave activity in the upper mesosphere/lower thermosphere (UMLT) region
Alexandra Zuhr
Atmospheric Measurement Techniques
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Lidar observations of large-amplitude mountain waves in the stratosphere above Tierra del Fuego, Argentina
Jose Luis Hormaechea
Scientific Reports, 2020
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Analysis of gravity waves in the tropical middle atmosphere over La Reunion Island (21°S, 55°E) with lidar using wavelet techniques
A. Hauchecorne
Annales Geophysicae, 2000
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Seasonal changes in gravity wave activity measured by lidars at mid-latitudes
F.-j. Lübken
Atmospheric Chemistry and Physics, 2008
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Stratospheric gravity wave characteristics and seasonal variations observed by lidar at the South Pole and Rothera, Antarctica
Xinzhao Chu
Journal of Geophysical Research, 2009
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Observation and backward trajectory of an inertio-gravity wave in the lower stratosphere
A. Hauchecorne, claude SOUPRAYEN
Annales Geophysicae, 2001
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Gravity wave propagation and dissipation from the stratosphere to the lower thermosphere
S. Son
Journal of Geophysical Research, 2009
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Rayleigh-Lidar Observations of Mesospheric Gravity Wave Activity above Logan, Utah
Durga N Kafle
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An investigation of gravity wave activity in the low-latitude upper mesosphere: Propagation direction and wind filtering
Paulo Batista
Journal of Geophysical Research, 2003
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Application of wavelet transformation to determine wavelengths and phase velocities of gravity waves observed by lidar measurements
Rolf Werner
Journal of Atmospheric and Solar-Terrestrial Physics, 2007
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Seasonal Cycle of Gravity Wave Potential Energy Densities from Lidar and Satellite Observations at 54° and 69°N
F.-j. Lübken
Journal of the Atmospheric Sciences, 2021
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Role of gravity waves in the spatial and temporal variability of stratospheric temperature measured by COSMIC/FORMOSAT-3 and Rayleigh lidar observations
Xinzhao Chu
Journal of Geophysical Research, 2010
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Gravity Wave Breaking Associated with Mesospheric Inversion Layers as Measured by the Ship-Borne BEM Monge Lidar and ICON-MIGHTI
Milena Martic
Atmosphere
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Large mesospheric inversion layer due to breaking of small-scale gravity waves: Evidence from Rayleigh lidar observations over Gadanki (13.5 ^o N, 79.2^o E)
K. Ramesh
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