[HTML][HTML] The Deep Propagating Gravity Wave Experiment (DEEPWAVE): An airborne and ground-based exploration of gravity wave propagation and effects from their …

DC Fritts, RB Smith, MJ Taylor… - Bulletin of the …, 2016 - journals.ametsoc.org
Alexander, MJ, and AW Grimsdell, 2013: Seasonal cycle of orographic gravity wave
occurrence above small islands in the Southern Hemisphere: Implications for effects on the …

The excitation of secondary gravity waves from local body forces: Theory and observation

SL Vadas, J Zhao, X Chu… - Journal of Geophysical …, 2018 - Wiley Online Library
We examine the characteristics of secondary gravity waves (GWs) excited by a localized (in
space) and intermittent (in time) body force in the atmosphere. This force is a horizontal …

Numerical modeling of the excitation, propagation, and dissipation of primary and secondary gravity waves during wintertime at McMurdo Station in the Antarctic

SL Vadas, E Becker - Journal of Geophysical Research …, 2018 - Wiley Online Library
We analyze the results of the gravity wave (GW)‐resolving, high‐resolution Kühlungsborn
Mechanistic general Circulation Model in July at McMurdo Station (166.69° E and 77.84° S) …

[HTML][HTML] A Compact Rayleigh Autonomous Lidar (CORAL) for the middle atmosphere

B Kaifler, N Kaifler - Atmospheric Measurement Techniques, 2021 - amt.copernicus.org
Abstract The Compact Rayleigh Autonomous Lidar (CORAL) is the first fully autonomous
middle atmosphere lidar system to provide density and temperature profiles from 15 to …

Lidar observations of large-amplitude mountain waves in the stratosphere above Tierra del Fuego, Argentina

N Kaifler, B Kaifler, A Dörnbrack, M Rapp… - Scientific reports, 2020 - nature.com
Large-amplitude internal gravity waves were observed using Rayleigh lidar temperature
soundings above Rio Grande, Argentina (54∘ S, 68∘ W), in the period 16–23 June 2018 …

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 …

J Zhao, X Chu, C Chen, X Lu, W Fong… - Journal of …, 2017 - Wiley Online Library
Five years of atmospheric temperature data, collected with an Fe Boltzmann lidar by the
University of Colorado group from 2011 to 2015 at Arrival Heights, are used to characterize …

Evaluation of methods for gravity wave extraction from middle-atmospheric lidar temperature measurements

B Ehard, B Kaifler, N Kaifler… - Atmospheric Measurement …, 2015 - amt.copernicus.org
This study evaluates commonly used methods of extracting gravity-wave-induced
temperature perturbations from lidar measurements. The spectral response of these …

Secondary gravity waves from the stratospheric polar vortex over ALOMAR observatory on 12–14 January 2016: observations and modeling

SL Vadas, E Becker, K Bossert… - Journal of …, 2023 - Wiley Online Library
We analyze the gravity waves (GWs) observed by a Rayleigh lidar at the Arctic Lidar
Observatory for Middle Atmosphere Research (ALOMAR)(16.08° E, 69.38° N) in Norway at …

Seasonal cycle of gravity wave potential energy densities from lidar and satellite observations at 54 and 69 N

I Strelnikova, M Almowafy… - Journal of the …, 2021 - journals.ametsoc.org
We present gravity wave climatologies based on 7 years (2012–18) of lidar and Sounding of
the Atmosphere using Broadband Emission Radiometry (SABER) temperatures and …

Influences of source conditions on mountain wave penetration into the stratosphere and mesosphere

B Kaifler, N Kaifler, B Ehard… - Geophysical …, 2015 - Wiley Online Library
We present atmospheric gravity wave (GW) measurements obtained by a Rayleigh/Raman
lidar at Lauder, New Zealand,(45° S, 170° E) during and after the Deep Propagating Gravity …