Articles | Volume 14, issue 11
https://doi.org/10.5194/acp-14-5251-2014
© Author(s) 2014. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/acp-14-5251-2014
© Author(s) 2014. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
On the detection of the solar signal in the tropical stratosphere
G. Chiodo
Dpto. de Astrofísica y CC de la Atmósfera, Universidad Complutense de Madrid, Madrid, Spain
D. R. Marsh
Atmospheric Chemistry Division, National Center for Atmospheric Research, Boulder, CO, USA
R. Garcia-Herrera
Instituto de Geociencias IGEO (CSIC-UCM), Madrid, Spain
Dpto. de Astrofísica y CC de la Atmósfera, Universidad Complutense de Madrid, Madrid, Spain
N. Calvo
Dpto. de Astrofísica y CC de la Atmósfera, Universidad Complutense de Madrid, Madrid, Spain
J. A. García
Dpto. de Física, Universidad de Extremadura, Badajoz, Spain
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- Are there statistical links between the direction of European weather systems and ENSO, the solar cycle or stratospheric aerosols? B. Laken & F. Stordal 10.1098/rsos.150320
- An upper-branch Brewer–Dobson circulation index for attribution of stratospheric variability and improved ozone and temperature trend analysis W. Ball et al. 10.5194/acp-16-15485-2016
- Simulating the atmospheric response to the 11-year solar cycle forcing with the UM-UKCA model: the role of detection method and natural variability E. Bednarz et al. 10.5194/acp-19-5209-2019
- A single-peak-structured solar cycle signal in stratospheric ozone based on Microwave Limb Sounder observations and model simulations S. Dhomse et al. 10.5194/acp-22-903-2022
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- Influences of Solar Forcing at Ultraviolet and Longer Wavelengths on Climate D. Shindell et al. 10.1029/2019JD031640
- Signatures of naturally induced variability in the atmosphere using multiple reanalysis datasets D. Mitchell et al. 10.1002/qj.2492
- The representation of solar cycle signals in stratospheric ozone – Part 1: A comparison of recently updated satellite observations A. Maycock et al. 10.5194/acp-16-10021-2016
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- Evidence for a continuous decline in lower stratospheric ozone offsetting ozone layer recovery W. Ball et al. 10.5194/acp-18-1379-2018
- Delineation of possible influence of solar variability and galactic cosmic rays on terrestrial climate parameters A. Singh & A. Bhargawa 10.1016/j.asr.2020.01.006
- Stratospheric Response to the 11-Yr Solar Cycle: Breaking Planetary Waves, Internal Reflection, and Resonance H. Lu et al. 10.1175/JCLI-D-17-0023.1
- How can we understand the global distribution of the solar cycle signal on the Earth's surface? K. Kodera et al. 10.5194/acp-16-12925-2016
- Short-Term Solar Modulation of the Madden–Julian Climate Oscillation L. Hood 10.1175/JAS-D-17-0265.1
- Aerosol and Solar Irradiance Effects on Decadal Climate Variability and Predictability D. Zanchettin 10.1007/s40641-017-0065-y
- Quasi-Decadal Variations of Lower Stratosphere Meteorological Parameters and Total Ozone Global Fields Based on Satellite Data K. Visheratin & M. Kalashnik 10.1134/S0001433818090414
- Long‐Term Prediction of Sudden Stratospheric Warmings With Geomagnetic and Solar Activity M. Vokhmyanin et al. 10.1029/2022JD037337
- Spectrally Dependent CLARREO Infrared Spectrometer Calibration Requirement for Climate Change Detection X. Liu et al. 10.1175/JCLI-D-16-0704.1
- Possible impacts of a future grand solar minimum on climate: Stratospheric and global circulation changes A. Maycock et al. 10.1002/2014JD022022
- Simulated solar cycle effects on the middle atmosphere: WACCM3 Versus WACCM4 E. Peck et al. 10.1002/2014MS000387
- Long‐Term Variability and Tendencies in Middle Atmosphere Temperature and Zonal Wind From WACCM6 Simulations During 1850–2014 K. Ramesh et al. 10.1029/2020JD033579
- Solar signals in CMIP‐5 simulations: the ozone response L. Hood et al. 10.1002/qj.2553
- Simulation of energetic particle precipitation effects during the 2003–2004 Arctic winter C. Randall et al. 10.1002/2015JA021196
- Insignificant influence of the 11-year solar cycle on the North Atlantic Oscillation G. Chiodo et al. 10.1038/s41561-018-0293-3
- The Variations in Middle and Upper Stratospheric Water Vapour over the Past Two Decades F. Xie et al. 10.2151/sola.2016-028
- Trends of ozone total columns and vertical distribution from FTIR observations at eight NDACC stations around the globe C. Vigouroux et al. 10.5194/acp-15-2915-2015
- Is there a solar signal in lower stratospheric water vapour? T. Schieferdecker et al. 10.5194/acp-15-9851-2015
- Solar influence on Earth's climate R. Thiéblemont & K. Matthes 10.1017/S1743921316003306
- Quantifying stratospheric ozone trends over 1984–2020: a comparison of ordinary and regularized multivariate regression models Y. Li et al. 10.5194/acp-23-13029-2023
- Solar impacts on decadal variability of tropopause temperature and lower stratospheric (LS) water vapour: a mechanism through ocean–atmosphere coupling W. Wang et al. 10.1007/s00382-018-4464-0
- Resolving a long‐standing model‐observation discrepancy on ozone solar cycle response K. Li et al. 10.1002/2016EA000199
- Solar wind signal in the wintertime North Atlantic oscillation and Northern Hemispheric circulation Z. Zhu et al. 10.1002/joc.6461
- Temperature and Ozone Response to Different Forcing in the Lower Troposphere and Stratosphere M. Usacheva et al. 10.3390/atmos15111289
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- Comment on “Observation of large and all-season ozone losses over the tropics” [AIP Adv. 12, 075006 (2022)] M. Chipperfield et al. 10.1063/5.0121723
- Stratospheric response to intraseasonal changes in incoming solar radiation C. Garfinkel et al. 10.1002/2015JD023244
- Stratospheric Influences on the MJO-Induced Rossby Wave Train: Effects on Intraseasonal Climate L. Hood et al. 10.1175/JCLI-D-18-0811.1
- Solar signals in CMIP‐5 simulations: the stratospheric pathway D. Mitchell et al. 10.1002/qj.2530
- On the aliasing of the solar cycle in the lower stratospheric tropical temperature A. Kuchar et al. 10.1002/2017JD026948
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