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Solar cycles in Alkenone SST

  • Bae et al., 2022. Si Woong Bae, Kyung Eun Lee, Tae Wook Ko, Ryoung Ah Kim & Young‑Gyu Park: Holocene centennial variability in sea surface temperature and linkage with solar irradiance, Scientific Reports, 12, 15046, 2022. https://doi.org/10.1038/s41598-022-19050-6. S.I.
  • Lee et al., 2015. Gwang-Soo Lee, Dong Geun Yoo, Sung Ho Bae, Gun-Hong Min, Seong-Pil Kim & Hunsoo Choi: Seismic stratigraphy of the Heuksan mud belt in the southeastern Yellow Sea, Korea , Geo-Mar Lett., 35,433-446, 2015. https://doi.org/10.1007/s00367-015-0420-8.
  • Pyrina et al., 2021 : Pyrina, M., Moreno-Chamarro, E., Wagner, S., Zorita, E.: Surface and Tropospheric Response of North Atlantic Summer Climate from Paleoclimate Simulations of the Past Millennium, Atmosphere 12, 568, 2021. https://doi.org/10.3390/atmos12050568
  • Scafetta, 2020b. Nicola Scafetta: Le oscillazioni solari e le armoniche stabili del sistema solare, Gerbertus, 13, 73-86, 2020 http://www.icra.it/gerbertus/2020/Gerb-13-2020-Scafetta-73-86.pdf
  • Scafetta & Willson 2013 Scafetta, N., Willson, R.C.: Planetary harmonics in the historical Hungarian aurora record (1523–1960)
    A proposal for a physical mechanism based on the mass-luminosity relation
    , Planetary and Space Science, 2013. https://doi.org/10.1016/j.pss.2013.01.005
  • Steinhilber et al., 2009 F. Steinhilber, J. Beer and C. Fröhlich. 2009: Total solar irradiance during the Holocene. Geophys. Res. Lett., 36, L19704, 2009. https://doi.org/10.1029/2009GL040142 I dati qui.
  • Steinhilber et al., 2012 Friedhelm Steinhilber, Jose A. Abreu, Jü Beer, Irene Brunner, Marcus Christl, Hubertus Fischer, Ulla Heikkilä, Pete Mathias Mann, Ken G. McCracken, Heinrich Miller, Hiroko Miyahara, Hans Oerter, Frank Wilhelms: 9,400 years of cosmic radiation and solar activity from ice cores and tree rings, PNAS, 109, no.16, 5967-5971, 2012.doi:10.1073/pnas.1118965109
    00readme.txt
    Bae's Spectrum fig.4(png)Comparison SST-TSI
    Steinhilber et al., 2009 (pdf) (png)
    Steinhilber09 extd. (pdf) (png)three frames
    Steinhilber09 Spectrum (pdf) (png)Update of the computed one in 2012
    Steinhilber09 Spectrum (pdf) (png)Original, computed in 2012
    Steinhilber12 Spectrum (png)in Scafetta & Willson 2013 (MEM)
    Steinhilber et al., 2012 (pdf) (png)
    Steinhilber12 LOMB (pdf)(png)(cap)
    Stein12-200 LOMB (pdf)(png) 0-200 yr zoom
    Comp. Stein12-Scafetta13 (pdf)(png) 0-200 yr zoom
    Alkenone SST(pdf) (png) HMB103+HMB102
    Alkenone LOMB(pdf) (png)
    Alke last Section(pdf) (png) SST (HMB102)
    Alke last Sec. LOMB(pdf) (png) SST (HMB102)
    Comp. SST-TSI(pdf) (png) LOMB-MEM, 0-1200 yr
    Comp. TSI-SST(pdf) (png) MEM-LOMB, 0-1200 yr not used
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    00readme.txt
    Data      
    Table 1 (html)from Scafetta, 2020
    Alkenone SST (txt)Original, Bae et al, 2022
    Alkenone LOMB (out)
    Alke HMB103 LOMB (out)older core, 5-10 Ka
    Steinhlber 2009(dat)9312÷-57 yr BP
    Steinhlber 09 MEM(out)Computed in 2012
    Steinhlber 2012(dat)9389÷-27 yr BP
    Steinhlber 12 LOMB(out)Periods in Kyr
    Steinhlber 12 LOMB(out)Periods through 200 yearsas in Scafetta & Willson, 2013


    Code
    s1.bon, s1-lomb.bon, s2.bon, s2-lomb.bon, stein2.bon,
    stein12-lomb.bon, stein12-200-lomb.bon,
    sst-tsi.bon, tsi-sst.bon,
    Page Written: Oct 19, 2022        Last Updated: