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<header id="header"> <h1><strong><a href="index.html"><p style="color:#080808";> Earth
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special"> <h2>Publications</h2> </header>
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<section>
<h3>Published</h3>
<div class="table-wrapper"> <table>
<tbody>
<tr> <td> <span> (33) Bradley, S., R. Sellevold, M. Petrini, M. Vizcino,
S. Georgiou, J. Zhu, J., B.L. Otto-Bliesner and <b>M. Lofverstrom</b> (2024):
Surface mass balance and climate of the Last Glacial Maximum northern
hemisphere ice sheets: simulations with CESM2.1,
Clim. Past, 20, 211–235, doi:10.5194/cp-20-211-2024 </span> | <a
href=""
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://cp.copernicus.org/articles/20/211/2024/"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span> (32) Oster, J., S. Macarewich, <b>M. Lofverstrom</b>, C. de Wet,
I. Montanez, J.M. Lora, C. Skinner and C. Tabor (2023):
North Atlantic meltwater during Heinrich Events drives wetter
climate with more atmospheric rivers in western North America,
Science Advances, 9, eadj2225, doi:10.1126/sciadv.adj2225</span> | <a
href=""
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.science.org/doi/10.1126/sciadv.adj2225"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span> (31) Liu, Z., Y. Bao, L.G. Thompson, E. Mosley-Thompson, C. Tabor,
G.J. Zhang, M. Yan, <b>M. Lofverstrom</b>, I. Montanez and J. Oster (2023): Tropical mountain
ice core d18O: A Goldilocks indicator for global temperature change
Science Advances, 9, eadi6725, doi:10.1126/sciadv.adi6725</span> | <a
href="https://drive.google.com/file/d/1-8B5Grvb6ne5IAV8kn8IqLZ7rBG2q2D5/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.science.org/doi/10.1126/sciadv.adi6725"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(30) <b>Lofverstrom, M.</b> and J. Zhu (2023).
Tropical precipitation woes in the Community
Earth System Model version 2. Geophysical Research Letters,
50, e2023GL104416, https://doi.org/10.1029/2023GL104416</span> | <a
href="https://drive.google.com/file/d/1-4JmgGoBJKWX85RDWF_ZNNgEtr7YWpuv/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2023GL104416"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(29) Herrington, A.R., P.H. Lauritzen, <b>M.
Lofverstrom</b>, W.H. Lipscomb, A. Gettelman, and M.A.
Taylor (2022): Impact of grids and dynamical cores in CESM2.2 on the
surface mass balance of the Greenland Ice Sheet.
Journal of Advances in Modeling Earth Systems, 14, e2022MS003192,
https://doi.org/10.1029/2022MS003192</span> | <a
href="https://drive.google.com/file/d/1M_lO2-nSMmLALBEkSfB4TVtUoJ3e02Km/view?usp=share_link"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2022MS003192"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(28) <b>Lofverstrom, M.</b>, D. M. Thompson,
B. L. Otto-Bliesner, and E. C. Brady: The importance of
Canadian Arctic Gateways for glacial expansion in
Scandinavia, Nature Geoscience,
doi:10.1038/s41561-022-00956-9 </span> | <a
href="https://drive.google.com/file/d/1EgiKgWt3EWUVFc0VHc0LFjDlmrhVdFPC/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.nature.com/articles/s41561-022-00956-9"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(27) Bush, M.B., S. Conrad, A. Restrepo, D.M
Thompson, <b>M. Lofverstrom</b>, J. L. Conroy (2022):
Human-induced ecological cascades: extinction,
restoration, and rewilding in the Galápagos highlands,
PNAS, Vol. 119, No. 24, e2203752119,
doi:10.1073/pnas.2203752119 </span> | <a
href="https://drive.google.com/file/d/1bVaQ7JNmwGauA7HVq15Fr-7z6oVHjE2i/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.pnas.org/doi/10.1073/pnas.2203752119"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(26) Thompson, D.M., M. McCulloch, J.E.
Cole, E.V. Reed, J. D'Olivo, K. Dyez, <b>M.
Lofverstrom</b>, J. Lough, N. Cantin, A.W. Tudhope, A.H.
Cheung, L. Vetter, and R.L. Edwards
(2022): Marginal reefs under stress: physiological
limits render Galápagos corals susceptible to warming
and acidification, AGU Advances, e2021AV000509, doi:
10.1029/2021AV000509 </span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2021AV000509"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2021AV000509"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(25) Sommers, A., B. Otto-Bliesner, B., W.H.
Lipscomb, <b>M. Lofverstrom</b>, S. Shafer, P. Bartlein,
E. Brady, E. Kluzek, G. Leguy, K. Thayer-Calder, and
R.Tomas (2021): Retreat and Regrowth of the Greenland
Ice Sheet During the Last Interglacial Simulated by
Coupled Climate and Ice Sheet Modeling, Paleoceanography
and Paleoclimatology</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2021PA004272"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2021PA004272"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(24) Tabor, C., <b>M. Lofverstrom</b>, J.
Oster, B. Wortham, C. de Wet, I. Montanez, A.
Rhoades, C. Zarzycki, C. He, and Z. Liu (2021): A
Mechanistic Understanding of Oxygen Isotopic Changes in
the Western United States at the Last Glacial Maximum,
Quaternary Science Review (invited)</span> | <a
href="https://drive.google.com/file/d/1KTkbSD4k-Y5dvuA8I9NY4c8m9IB5LP9v/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://reader.elsevier.com/reader/sd/pii/S0277379121004625?token=6EEC797C8FFB8C7D95170C0194F31B3943D4740E1F0DEFE271D52905CE54CD1D79DA12B05620315CA33568E3E8E762D3&originRegion=us-east-1&originCreation=20211106174624"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(23) Menemenlis, S., J. Lora, <b>M.
Lofverstrom</b>, and D. Chandan (2021): Influence of
Stationary Waves on mid-Pliocene Atmospheric Rivers and
Hydroclimate, Global and Planetary Changel, 204, 103557,
doi: 10.1016/j.gloplacha.2021.103557 </span> | <a
href="https://drive.google.com/file/d/1LKkCy0TbtRSARqjo70l9SfRw6OaizDmm/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.sciencedirect.com/science/article/pii/S0921818121001429"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(22) Muntjewerf, L., W. J. Sacks, <b>M.
Lofverstrom</b>, J.G. Fyke, W.H. Lipscomb, C. Ernani da
Silva, M. Vizcaino, K. Thayer-Calder, and J. T. M.
Lenaerts (2021): Description and demonstration of the
coupled Community Earth System Model v2 – Community Ice
Sheet Model v2 (CESM2-CISM2). Journal of Advances in
Modeling Earth Systems, 13, e2020MS002356, doi:
10.1029/2020MS002356</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2020MS002356"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2020MS002356"
style="color:#0011ff" target="_blank">online</a> </td> </tr>
<tr> <td> <span>(21) Kageyama, M., S. P. Harrison, M.
Kapsch, <b>M. Lofverstrom</b>, J. M. Lora, U.
Mikolajewicz, S. Sherriff-Tadano, T. Vadsaria, A.
Abe-Ouchi, N. Bouttes, D. Chandan, L. Gregoire, R.
Ivanovic, K. Izumi, A. N. LeGrande, F. Lhardy, G.
Lohmann, P. A. Morozova, R. Ohgaito, A. Paul, W. R.
Peltier, C. J. Poulsen, A. Quiquet, D. M. Roche, X. Shi,
J. E. Tierney, P. J. Valdes, E. Volodin and J. Zhu
(2021): The PMIP4 Last Glacial Maximum experiments:
preliminary results and comparison with the PMIP3
simulations, Clim. Past, 17, 1065–1089, doi:
10.5194/cp-17-1065-2021</span> | <a
href="https://cp.copernicus.org/articles/17/1065/2021/cp-17-1065-2021.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://cp.copernicus.org/articles/17/1065/2021/cp-17-1065-2021.html"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(20) Zhu, J., B. Otto-Bliesner, E. Brady, C.
Poulsen, J. Tierney, <b>M. Lofverstrom</b>, P. DiNezio
(2021): Assessing equilibrium climate sensitivity of the
Community Earth System Model version 2 through
simulation of the last glacial maximum, Geophysical
Research Letters, 48 (3), e2020GL091220, doi:
10.1029/2020GL091220</span> | <a
href="https://drive.google.com/file/d/1M_2fbS2WsCv93Se4xKCk7bniPvoYwZ3T/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2020GL091220"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(19) Dow, W., A. Maycock, <b>M.
Lofverstrom</b>, and C. J. Smith (2021): The effect of
anthropogenic aerosols on the Aleutian Low, J. Climate,
34 (5), pp 1725-1741, doi:
10.1175/JCLI-D-20-0423.1</span> | <a
href="https://drive.google.com/file/d/1MkR2EGh1Ts3nZ5z5Y9XPJDRYrIUNn7HP/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://journals.ametsoc.org/view/journals/clim/aop/JCLI-D-20-0423.1/JCLI-D-20-0423.1.xml"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(18) Muntjewerf, L. Sellevold, R., Vizcaino,
M., Ernani da Silva,C., Petrini, M., Thayer-Calder, K.,
Scherrenberg, M., Bradley, S., Fyke, J., Lipscomb, W.,
<b>Lofverstrom, M.</b>, and Sacks, W. J.
(2020): Accelerated Greenland ice sheet mass loss under
high greenhouse gas forcing as simulated by the coupled
CESM2.1-CISM2.1, Journal of Advances in Modeling Earth
Systems, 12, e2019MS002031, doi: 10.1029/2019MS002031
</span> | <a
href="https://drive.google.com/file/d/1UMYxzkkIePezXMrcodlDI5BIEchlm9MP/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2019MS002031"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(17) <b>Lofverstrom, M.</b>, J. Fyke, K.
Thayer-Calder, L. Muntjewerf, M. Vizcaino, W. J.
Sacks, W. H. Lipscomb, B. L. Otto-Bliesner, and S. L.
Bradley (2020): An efficient ice-sheet/Earth system
model spinup procedure for CESM2-CISM2: description,
evaluation and broader applicability, Journal of
Advances in Modeling Earth Systems, 12, e2019MS001984,
doi: 10.1029/2019MS001984</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2019MS001984"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2019MS001984"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(16) Rehfeld, K., R. Hebert, J. Lora, <b>M.
Lofverstrom</b>, and C. Brierley (2020): Variability of
surface climate in simulations of past and future, Earth
Syst. Dynam., 11, 447–468, doi:
10.5194/esd-11-447-2020</span> | <a
href="http://oceanrep.geomar.de/49743/1/esd-11-447-2020.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://esd.copernicus.org/articles/11/447/2020/"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(15) Muntjewerf, L., M. Petrini, M.
Vizcaino, C. Ernani da Silva, R. Sellevold, M.
Scherrenberg, K. Thayer-Calder, S. Bradley, J. Lenaerts,
W. H. Lipscomb, and <b>M. Lofverstrom</b>
(2020): Greenland Ice Sheet Contribution to 21st Century
Sea Level Rise as Simulated by the Coupled
CESM2.1-CISM2.1, Geophys. Res. Lett., 47, e2019GL086836,
doi: 10.1029/2019GL086836</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2019GL086836"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2019GL086836"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(14) Tulenko, J.P., <b>M. Lofverstrom</b>,
and J.P. Briner (2020): Ice sheet influence on
atmospheric circulation explains the patterns of
Pleistocene alpine glacier records in North America,
Earth and Planetary Science Letters, 534, doi:
10.1016/j.epsl.2020.116115</span> | <a
href="http://www.glyfac.buffalo.edu/Faculty/briner/buf/pubs/Tulenko_et_al_2020.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.sciencedirect.com/science/article/abs/pii/S0012821X20300583"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(13) <b>Lofverstrom, M.</b> (2020): A
dynamic link between precipitation extremes in western
North America and Europe at the Last Glacial Maximum,
Earth and Planetary Science Letters, 534, doi:
10.1016/j.epsl.2020.116081</span> | <a
href="https://drive.google.com/file/d/1LTv92dYYu2b-1diEbKcOYSjuLHmsfmyv/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.sciencedirect.com/science/article/abs/pii/S0012821X20300248"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(12) Liakka, J. and <b>M. Lofverstrom</b>
(2018): Arctic warming induced by the Laurentide ice
sheet topography, Clim. Past 14, 887–900, doi:
10.5194/cp-14-887-2018</span> | <a
href="https://drive.google.com/file/d/1-WmS0tJYdeK6jBLanxH1hBHTkqu479Qn/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://cp.copernicus.org/articles/14/887/2018/"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(11) Fyke, J.G., O. Sergienko, <b>M.
Lofverstrom</b>, J. Lenaerts, and S. Price (2018): An
overview of interactions and feedbacks between ice
sheets and the Earth system, Reviews of Geophysics 56,
doi: 10.1029/2018RG000600</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2018RG000600"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2018RG000600"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(10) <b>Lofverstrom, M.</b>, and J. Liakka
(2018): The influence of atmospheric grid resolution in
a climate model-forced ice sheet simulation, The
Cryosphere, 12, 1499–1510, doi: 10.5194/tc-12-1499-2018
(highlighted)</span> | <a
href="https://drive.google.com/file/d/1aVkjzb2xH4vlhTPsoR0pEWLnUscXbaAP/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://tc.copernicus.org/articles/12/1499/2018/"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(9) <b>Lofverstrom, M.</b>, and J. M. Lora
(2017): Abrupt regime shifts in the North Atlantic
atmospheric circulation over the last deglaciation,
Geophys. Res. Lett., 44, doi:
10.1002/2017GL074274</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1002/2017GL074274"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2017GL074274"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(8) Otto-Bliesner, B., A. Jahn, R. Feng, E.
Brady, A. Hu, and <b>M. Lofverstrom</b> (2016): Changes
in Arctic Gateways Amplify North Atlantic Warming in the
Late Pliocene, Geophys. Res. Letters, 44, doi:
10.1002/2016GL071805 (highlighted)</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1002/2016GL071805"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2016GL071805"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(7) <b>Lofverstrom, M.</b>, and J. Liakka
(2016): On the limited ice intrusion in Alaska at the
Last Glacial Maximum, Geophys. Res. Letters, 43, doi:
10.1002/2016GL071012</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1002/2016GL071012"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2016GL071012"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(6) <b>Lofverstrom, M.</b>, R. Caballero, J.
Nilsson, and G. Messori (2016): Stationary wave
reflection as a mechanism for zonalising the Atlantic
winter jet at the LGM, J. Atm. Sci., 73, 3329–3342,
doi: 10.1175/JAS-D-15-0295.1</span> | <a
href="http://climdyn.misu.su.se/publications/pdf/lofverstrom.etal.2016.stationary.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2016GL071012"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(5) Liakka, J., <b>M. Lofverstrom</b>, and
F. Colleoni (2016): The impact of the North American
glacial topography on the evolution of the Eurasian ice
sheet over the last glacial cycle, Clim. Past., 12,
1225–1241, doi: 10.5194/cp-12-1225-2016</span> | <a
href="https://www.researchgate.net/profile/Marcus_Lofverstrom/publication/303527688_The_impact_of_the_North_American_glacial_topography_on_the_evolution_of_the_Eurasian_ice_sheet_over_the_last_glacial_cycle/links/5750775c08aed9fa2bd36757/The-impact-of-the-North-American-glacial-topography-on-the-evolution-of-the-Eurasian-ice-sheet-over-the-last-glacial-cycle.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://cp.copernicus.org/articles/12/1225/2016/"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(4) Pausata, F., and <b>M. Lofverstrom</b>
(2015): On the enigmatic similarity in Greenland d18O
between the Oldest and Younger Dryas, Geophys. Res.
Letters, 42, doi: 10.1002/2015GL066042</span> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/pdf/10.1002/2015GL066042"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2015GL066042"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(3) <b>Lofverstrom, M.</b>, J. Liakka, and
J. Kleman (2015): The North American Cordillera – an
impediment to growing the continent-wide Laurentide Ice
Sheet, J. Climate, 28, 9433–9450, doi:
10.1175/JCLI-D-15-0044.1</span> | <a
href="https://www.researchgate.net/profile/Marcus_Lofverstrom/publication/283200163_The_North_American_Cordillera_-_an_impediment_to_growing_the_continent-wide_Laurentide_Ice_Sheet/links/568c070e08aeb488ea2fa70e/The-North-American-Cordillera-an-impediment-to-growing-the-continent-wide-Laurentide-Ice-Sheet.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://journals.ametsoc.org/jcli/article/28/23/9433/34468"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(2) <b>Lofverstrom, M.</b>, R. Caballero, J.
Nilsson, and J. Kleman (2014): Evolution of the
large-scale atmospheric circulation in response to
changing ice sheets over the last glacial cycle,
Clim. Past, 10, 1453–1471, doi:
10.5194/cp-10-1453-2014</span> | <a
href="https://cp.copernicus.org/articles/10/1453/2014/cp-10-1453-2014.pdf"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://cp.copernicus.org/articles/10/1453/2014/"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
<tr> <td> <span>(1) Liakka, J., J. Nilsson, and <b>M.
Lofverstrom</b> (2011): Interactions between stationary
waves and ice sheets: linear versus nonlinear
atmospheric response, Clim. Dyn., 38, 1249–1262, doi:
10.1007/s00382-011-1004-6</span> | <a
href="https://drive.google.com/file/d/1lhXFUJRqRYzzpMRiaMjWQGML3dyZc282/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://link.springer.com/article/10.1007%2Fs00382-011-1004-6"
style="color:#0011ff" target="_blank">online</a>. </td> </tr>
</tbody>
</table> </div>
<h3>In preparation / in review</h3>
<div class="table-wrapper"> <table>
<tbody>
<tr> <td> <span> Badarunnisa, A., <b>M. Lofverstrom</b>, D. Thompson:
Evaluating the representation of South American summer precipitation
characteristics in the CMIP6 pre-industrial simulations,
Journal of Climate (in preparation)</span> </td> </tr>
<tr> <td> <span>Berry, A, and <b>M. Lofverstrom</b>: The
influence of precipitation on Greenland Ice Sheet
regrowth during the Last Interglacial Period, In preparation for EPSL</span> </td> </tr>
<tr> <td> <span>Cole, Thompson, Dyez, Tripp, Tudhope, Lofverstrom, Stevenson,
Okun, Lawson, Conroy, Jimenez, Edward: Recent intensification of eastern
Pacific ENSO is unprecedented across the last millennium,
In preparation for Nature Communication</span> </td> </tr>
<tr> <td> <span>Harley, G., K. L. DeLong, <b>M. Lofverstrom</b>, C. A. Reese,
S. J. Bentley Sr., K. Xie, S. Gonzalez, J. T. Troung, K. J. Heeter,
A. L. Kaiser, and A. Caporaso:
Rapid decline and mortality of a Pleistocene-aged Taxodium distichum L. (Rich.)
forest now submerged in the northern Gulf of Mexico, USA,
In preparation for Boreas</span> </td> </tr>
<tr> <td> <span>Kojima, A. C, D. M. Thompson, and <b>Lofverstrom, M.</b>:
Characterizing the temporal variability of western equatorial Pacific
Trade Winds via spectral analysis,
, in preparation for J. Climate</span> </td> </tr>
<tr> <td> <span>Kojima, A. C, D. M. Thompson, J. E. Carilli, M. Lofverstrom,
T. M. Marchitto, H. R. Sayani, G. A. Farfan, Z. E. Benson, V. G. Javier,
M. M. Weerabaddana, D. L. Dettman, and K. M. Cobb,
Coral Mn/Ca: A Window into Pacific Trade-wind Behavior,
in preparation for J. Climate</span> </td> </tr>
<tr> <td> <span><b>Lofverstrom, M.</b>, J., Liakka, and A.
Lewinschal: Linear University Model of the Atmosphere
(LUMA), in preparation for Geoscientific Model Development</span> </td> </tr>
<tr> <td> <span><b>Lofverstrom, M.</b>, C. Tabor, J. Oster,
I. Montanez, B. Wortham, and C. de Wet: Thermal and
topographic control of the large-scale atmospheric
circulation over the last deglaciation, in preparation
for J. Climate </span> </td> </tr>
<tr> <td> <span>Meegan Kumar, D., J.E. Tierney, T.
Bhattacharya, <b>M. Lofverstrom</b>, J. Zhu, and J. W.
Murray: Response of the North American Monsoon to
Glacial–Interglacial Climate Forcings, (in preparation) </span> </td> </tr>
<tr><td> <span>Richey J., K. Thirumalai, <b>M. Lofverstrom</b>,
S. Truebe, and J. Cole:
Holocene Deterioration of the Rio Grande outflow into the Gulf of Mexico:
A multiproxy perspective, in preparation for Nature </span> </td> </tr>
<tr> <td> <span>Odalen, M., and <b>M. Lofverstrom</b>: The
link between ocean carbon storage and circulation in
future climate scenarios simulated with the Community
Earth System Model 2 (CESM2), in preparation for
Geophysical Research Letters </span> </td> </tr>
<td> <span>Russell, J., D.G. Long, P. Chang, M. Cowell, E.
Curchitser, M.S. Dinniman, C. Fellows, P.J. Goodman,
E.E. Hofmann, Z. Jelenak, J. Klinck, N. Lovenduski,
<b>M. Lofverstrom</b>, M. Mazloff, S. Petroy, A. Polit,
E. Rodriguez, O. Schofield, A. Stoffelen, R.J. Stouffer,
R. Wanninkhof, C. Weimer, X. Zeng: Measuring Winds from
Space to Reduce the Uncertainty in the Southern Ocean
Carbon Fluxes: Science Requirements and Proposed
Mission, Geophysical Research Letters (in preparation) </span> </td> </tr>
<tr> <td> <span> Thompson, D., J. D’Olivo, <b>M. Lofverstrom</b>, E.V. Reed,
J.E. Cole, Gavin L. Foster, M. McCulloch, N. Cantin, K. Dyez, J. Lough:
Metabolic processes dictate corals’ capacity to upregulate their internal
growth medium, Nature Climate Change (in review)</span> </td> </tr>
<tr> <td> <span> Thomas, H. and <b>M. Lofverstrom</b>:
Low Top Limitations: Variations in Sudden Stratospheric Warming Signatures Across
Different Atmospheric Configurations of the Community Earth System Model, Versions 2,
Geophysical Research Letters (in preparation)</span> </td> </tr>
<tr> <td> <span>Wilcox, P. and <b>M.
Lofverstrom</b>: Significant ice sheet melt in the
Cordilleran during the Younger Dryas driven by regional
atmospheric reorganization (in preparation) </span> </td> </tr>
</tbody> </table> </div>
<h3>Other publications</h3>
<div class="table-wrapper"> <table>
<tbody>
<tr> <td> <span> <b>Lofverstrom, M.</b> and K. Thirumalai:
Thermal forcing modulates the North American Monsoon,
Matters Arising </span> </td> </tr>
<tr> <td> <span><b>M. Lofverstrom</b> and D. Thompson
(2022): Closed ocean gateways in the Canadian archipelago
are key to glaciation in Scandinavia, Nature Geoscience
Research Briefing | <a
href="https://drive.google.com/file/d/1EOEr-PFFAqggfBwT2SIJf7OoObgHPKQ7/view?usp=sharing"
style="color:#0011ff" target="_blank">PDF</a> | <a
href="https://www.nature.com/articles/s41561-022-00959-6"
style="color:#0011ff" target="_blank">online</a>.</span> </td> </tr>
<tr> <td> <span>Otto-Bliesner, B., <b>M.
Lofverstrom</b>, P. Bakker, and R. Feng (2019): Arctic
warming and the Greenland Ice Sheet during the Last
Interglacial as simulated by climate models: Responses and
feedbacks to orbital forcing, PAGES Science Highlights: Past Sea-Level Changes |
<!-- href="http://pastglobalchanges.org/download/docs/magazine/2019-1/PAGESmagazine_2019%281%29_22-23.pdf"
<!-- target="_blank">PDF</a>, -->
<a
href="http://www.pages.unibe.ch/products/pages-magazine/12811"
style="color:#0011ff"
target="_blank">online</a>.</span> </td></tr>
<tr> <td> <span>Fyke, J.G., O.
Sergienko, <b>M. Lofverstrom</b>, J.
Lenaerts, and S. Price (2018): Icy interactions, Eos, 99, doi: 10.1029/2018EO100915 |
<!-- <a
<!-- href="http://pastglobalchanges.org/download/docs/magazine/2019-1/PAGESmagazine_2019%281%29_22-23.pdf"
<!-- target="_blank">PDF</a>, -->
<a
href="https://eos.org/editors-vox/icy-interactions"
style="color:#0011ff"
target="_blank">online</a>.</span> </td>
</tr>
<tr> <td> <span><b>Lofverstrom,
M.</b> (2014): On the interaction between
ice sheets and the large-scale atmospheric
circulation over the last glacial cycle, PhD thesis, ISBN: 978-91-7649-010-5 |
<!-- <a
<!-- href="http://pastglobalchanges.org/download/docs/magazine/2019-1/PAGESmagazine_2019%281%29_22-23.pdf"
<!-- target="_blank">PDF</a>, -->
<a
href="https://www.diva-portal.org/smash/record.jsf?pid=diva2%3A752718&dswid=-5139"
style="color:#0011ff" target="_blank">online</a>.</span> </td> </tr>
</tbody> </table> </div>
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