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2 changes: 1 addition & 1 deletion feed.xml
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<?xml version="1.0" encoding="utf-8"?><feed xmlns="http://www.w3.org/2005/Atom" xml:lang="en"><generator uri="https://jekyllrb.com/" version="3.9.3">Jekyll</generator><link href="https://www.pism.io/feed.xml" rel="self" type="application/atom+xml" /><link href="https://www.pism.io/" rel="alternate" type="text/html" hreflang="en" /><updated>2024-07-07T01:15:10+00:00</updated><id>https://www.pism.io/feed.xml</id><title type="html">PISM</title><subtitle>Website for PISM, the Parallel Ice Sheet Model</subtitle><author><name>The PISM Authors</name><email>[email protected]</email></author><entry><title type="html">MARUM Bremen: open postdoc in ice-sheet modeling</title><link href="https://www.pism.io/news/2024/06/05/postdoc-marum/" rel="alternate" type="text/html" title="MARUM Bremen: open postdoc in ice-sheet modeling" /><published>2024-06-05T00:00:00+00:00</published><updated>2024-06-05T00:00:00+00:00</updated><id>https://www.pism.io/news/2024/06/05/postdoc-marum</id><content type="html" xml:base="https://www.pism.io/news/2024/06/05/postdoc-marum/">&lt;p&gt;MARUM - Center for Marine Environmental Sciences at the University of
<?xml version="1.0" encoding="utf-8"?><feed xmlns="http://www.w3.org/2005/Atom" xml:lang="en"><generator uri="https://jekyllrb.com/" version="3.9.3">Jekyll</generator><link href="https://www.pism.io/feed.xml" rel="self" type="application/atom+xml" /><link href="https://www.pism.io/" rel="alternate" type="text/html" hreflang="en" /><updated>2024-07-25T20:09:39+00:00</updated><id>https://www.pism.io/feed.xml</id><title type="html">PISM</title><subtitle>Website for PISM, the Parallel Ice Sheet Model</subtitle><author><name>The PISM Authors</name><email>[email protected]</email></author><entry><title type="html">MARUM Bremen: open postdoc in ice-sheet modeling</title><link href="https://www.pism.io/news/2024/06/05/postdoc-marum/" rel="alternate" type="text/html" title="MARUM Bremen: open postdoc in ice-sheet modeling" /><published>2024-06-05T00:00:00+00:00</published><updated>2024-06-05T00:00:00+00:00</updated><id>https://www.pism.io/news/2024/06/05/postdoc-marum</id><content type="html" xml:base="https://www.pism.io/news/2024/06/05/postdoc-marum/">&lt;p&gt;MARUM - Center for Marine Environmental Sciences at the University of
Bremen is offering a position for one postdoctoral researcher in ice-sheet
modeling, in the project “PalMod III-From the Last Interglacial to the Anthropocene”.&lt;/p&gt;

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11 changes: 11 additions & 0 deletions publications/applications.bib
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@Article{Depolli2024,
author = {Depolli, M. and \v{Z}ebre, M. and Stepi\v{s}nik, U. and Kosec, G.},
journal = {Climate of the Past},
title = {Simulation of a former ice field with {Parallel Ice Sheet Model} -- {Snežnik} study case},
year = {2024},
number = {7},
pages = {1471--1488},
volume = {20},
doi = {10.5194/cp-20-1471-2024}
}

@Article{Klages2024,
author = {Klages, J. P. and Hillenbrand, C.-D. and Bohaty, S. M. and Salzmann, U. and Bickert, T. and Lohmann, G. and Knahl, H. S. and Gierz, P. and Niu, L. and Titschack, J. and Kuhn, G. and Frederichs, T. and Müller, J. and Bauersachs, T. and Larter, R. D. and Hochmuth, K. and Ehrmann, W. and Nehrke, G. and Rodríguez-Tovar, F. J. and Schmiedl, G. and Spezzaferri, S. and Läufer, A. and Lisker, F. and van de Flierdt, T. and Eisenhauer, A. and Uenzelmann-Neben, G. and Esper, O. and Smith, J. A. and Pälike, H. and Spiegel, C. and Dziadek, R. and Ronge, T. A. and Freudenthal, T. and Gohl, K.},
journal = {Science},
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1 change: 1 addition & 0 deletions publications/index.html
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<ol>
<li>Lars Ackermann, Thomas Rackow, Kai Himstedt, Paul Gierz, Gregor Knorr, and Gerrit Lohmann. A comprehensive Earth system model (AWI-ESM2.1) with interactive icebergs: effects on surface and deep-ocean characteristics. <em>Geoscientific Model Development</em>, 17(8):3279–3301, April 2024. <a href="https://doi.org/10.5194/gmd-17-3279-2024">doi:10.5194/gmd-17-3279-2024</a>.</li>
<li>A. Delhasse, J. Beckmann, C. Kittel, and X. Fettweis. Coupling MAR (Modèle Atmosphérique Régional) with PISM (Parallel Ice Sheet Model) mitigates the positive melt–elevation feedback. <em>The Cryosphere</em>, 18(2):633–651, 2024. URL: <a href="https://tc.copernicus.org/articles/18/633/2024/">https://tc.copernicus.org/articles/18/633/2024/</a>, <a href="https://doi.org/10.5194/tc-18-633-2024">doi:10.5194/tc-18-633-2024</a>.</li>
<li>M. Depolli, M. Žebre, U. Stepišnik, and G. Kosec. Simulation of a former ice field with Parallel Ice Sheet Model – Snežnik study case. <em>Climate of the Past</em>, 20(7):1471–1488, 2024. <a href="https://doi.org/10.5194/cp-20-1471-2024">doi:10.5194/cp-20-1471-2024</a>.</li>
<li>Jeremy C. Ely, Chris D. Clark, Sarah L. Bradley, Lauren Gregoire, Niall Gandy, Ed Gasson, Remy L.J. Veness, and Rosie Archer. Behavioural tendencies of the last British-Irish Ice Sheet revealed by data-model comparison. <em>Journal of Quaternary Science</em>, June 2024. <a href="https://doi.org/10.1002/jqs.3628">doi:10.1002/jqs.3628</a>.</li>
<li>J. P. Klages, C.-D. Hillenbrand, S. M. Bohaty, U. Salzmann, T. Bickert, G. Lohmann, H. S. Knahl, P. Gierz, L. Niu, J. Titschack, G. Kuhn, T. Frederichs, J. Müller, T. Bauersachs, R. D. Larter, K. Hochmuth, W. Ehrmann, G. Nehrke, F. J. Rodríguez-Tovar, G. Schmiedl, S. Spezzaferri, A. Läufer, F. Lisker, T. van de Flierdt, A. Eisenhauer, G. Uenzelmann-Neben, O. Esper, J. A. Smith, H. Pälike, C. Spiegel, R. Dziadek, T. A. Ronge, T. Freudenthal, and K. Gohl. Ice sheet–free West Antarctica during peak early Oligocene glaciation. <em>Science</em>, July 2024. <a href="https://doi.org/10.1126/science.adj3931">doi:10.1126/science.adj3931</a>.</li>
<li>A. K. Klose, V. Coulon, F. Pattyn, and R. Winkelmann. The long-term sea-level commitment from Antarctica. <em>The Cryosphere</em>, 2024. URL: <a href="https://tc.copernicus.org/preprints/tc-2023-156/">https://tc.copernicus.org/preprints/tc-2023-156/</a>, <a href="https://doi.org/10.5194/tc-2023-156">doi:10.5194/tc-2023-156</a>.</li>
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15 changes: 8 additions & 7 deletions publications/published.md
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1. Lars Ackermann, Thomas Rackow, Kai Himstedt, Paul Gierz, Gregor Knorr, and Gerrit Lohmann\. A comprehensive Earth system model \(AWI\-ESM2\.1\) with interactive icebergs: effects on surface and deep\-ocean characteristics\. *Geoscientific Model Development*, 17\(8\):3279–3301, April 2024\. [doi:10\.5194/gmd\-17\-3279\-2024](https://doi.org/10.5194/gmd-17-3279-2024)\.
2. A\. Delhasse, J\. Beckmann, C\. Kittel, and X\. Fettweis\. Coupling MAR \(Modèle Atmosphérique Régional\) with PISM \(Parallel Ice Sheet Model\) mitigates the positive melt–elevation feedback\. *The Cryosphere*, 18\(2\):633–651, 2024\. URL: [https://tc\.copernicus\.org/articles/18/633/2024/](https://tc.copernicus.org/articles/18/633/2024/), [doi:10\.5194/tc\-18\-633\-2024](https://doi.org/10.5194/tc-18-633-2024)\.
3. Jeremy C\. Ely, Chris D\. Clark, Sarah L\. Bradley, Lauren Gregoire, Niall Gandy, Ed Gasson, Remy L\.J\. Veness, and Rosie Archer\. Behavioural tendencies of the last British\-Irish Ice Sheet revealed by data\-model comparison\. *Journal of Quaternary Science*, June 2024\. [doi:10\.1002/jqs\.3628](https://doi.org/10.1002/jqs.3628)\.
4. J\. P\. Klages, C\.\-D\. Hillenbrand, S\. M\. Bohaty, U\. Salzmann, T\. Bickert, G\. Lohmann, H\. S\. Knahl, P\. Gierz, L\. Niu, J\. Titschack, G\. Kuhn, T\. Frederichs, J\. Müller, T\. Bauersachs, R\. D\. Larter, K\. Hochmuth, W\. Ehrmann, G\. Nehrke, F\. J\. Rodríguez\-Tovar, G\. Schmiedl, S\. Spezzaferri, A\. Läufer, F\. Lisker, T\. van de Flierdt, A\. Eisenhauer, G\. Uenzelmann\-Neben, O\. Esper, J\. A\. Smith, H\. Pälike, C\. Spiegel, R\. Dziadek, T\. A\. Ronge, T\. Freudenthal, and K\. Gohl\. Ice sheet–free West Antarctica during peak early Oligocene glaciation\. *Science*, July 2024\. [doi:10\.1126/science\.adj3931](https://doi.org/10.1126/science.adj3931)\.
5. A\. K\. Klose, V\. Coulon, F\. Pattyn, and R\. Winkelmann\. The long\-term sea\-level commitment from Antarctica\. *The Cryosphere*, 2024\. URL: [https://tc\.copernicus\.org/preprints/tc\-2023\-156/](https://tc.copernicus.org/preprints/tc-2023-156/), [doi:10\.5194/tc\-2023\-156](https://doi.org/10.5194/tc-2023-156)\.
6. Daniel P\. Lowry, Holly K\. Han, Nicholas R\. Golledge, Natalya Gomez, Katelyn M\. Johnson, and Robert M\. McKay\. Ocean cavity regime shift reversed West Antarctic grounding line retreat in the late Holocene\. *Nature Communications*, April 2024\. [doi:10\.1038/s41467\-024\-47369\-3](https://doi.org/10.1038/s41467-024-47369-3)\.
7. Lu Niu, Gregor Knorr, Uta Krebs\-Kanzow, Paul Gierz, and Gerrit Lohmann\. Rapid Laurentide Ice Sheet growth preceding the Last Glacial Maximum due to summer snowfall\. *Nature Geoscience*, April 2024\. [doi:10\.1038/s41561\-024\-01419\-z](https://doi.org/10.1038/s41561-024-01419-z)\.
8. G\. J\. G\. Paxman, S\. S\. R\. Jamieson, A\. M\. Dolan, and M\. J\. Bentley\. Subglacial valleys preserved in the highlands of south and east Greenland record restricted ice extent during past warmer climates\. *The Cryosphere*, 18\(3\):1467–1493, 2024\. URL: [https://tc\.copernicus\.org/articles/18/1467/2024/](https://tc.copernicus.org/articles/18/1467/2024/), [doi:10\.5194/tc\-18\-1467\-2024](https://doi.org/10.5194/tc-18-1467-2024)\.
9. Clemens Schannwell, Uwe Mikolajewicz, Marie\-Luise Kapsch, and Florian Ziemen\. A mechanism for reconciling the synchronisation of Heinrich events and Dansgaard\-Oeschger cycles\. *Nature Communications*, April 2024\. [doi:10\.1038/s41467\-024\-47141\-7](https://doi.org/10.1038/s41467-024-47141-7)\.
3. M\. Depolli, M\. Žebre, U\. Stepišnik, and G\. Kosec\. Simulation of a former ice field with Parallel Ice Sheet Model – Snežnik study case\. *Climate of the Past*, 20\(7\):1471–1488, 2024\. [doi:10\.5194/cp\-20\-1471\-2024](https://doi.org/10.5194/cp-20-1471-2024)\.
4. Jeremy C\. Ely, Chris D\. Clark, Sarah L\. Bradley, Lauren Gregoire, Niall Gandy, Ed Gasson, Remy L\.J\. Veness, and Rosie Archer\. Behavioural tendencies of the last British\-Irish Ice Sheet revealed by data\-model comparison\. *Journal of Quaternary Science*, June 2024\. [doi:10\.1002/jqs\.3628](https://doi.org/10.1002/jqs.3628)\.
5. J\. P\. Klages, C\.\-D\. Hillenbrand, S\. M\. Bohaty, U\. Salzmann, T\. Bickert, G\. Lohmann, H\. S\. Knahl, P\. Gierz, L\. Niu, J\. Titschack, G\. Kuhn, T\. Frederichs, J\. Müller, T\. Bauersachs, R\. D\. Larter, K\. Hochmuth, W\. Ehrmann, G\. Nehrke, F\. J\. Rodríguez\-Tovar, G\. Schmiedl, S\. Spezzaferri, A\. Läufer, F\. Lisker, T\. van de Flierdt, A\. Eisenhauer, G\. Uenzelmann\-Neben, O\. Esper, J\. A\. Smith, H\. Pälike, C\. Spiegel, R\. Dziadek, T\. A\. Ronge, T\. Freudenthal, and K\. Gohl\. Ice sheet–free West Antarctica during peak early Oligocene glaciation\. *Science*, July 2024\. [doi:10\.1126/science\.adj3931](https://doi.org/10.1126/science.adj3931)\.
6. A\. K\. Klose, V\. Coulon, F\. Pattyn, and R\. Winkelmann\. The long\-term sea\-level commitment from Antarctica\. *The Cryosphere*, 2024\. URL: [https://tc\.copernicus\.org/preprints/tc\-2023\-156/](https://tc.copernicus.org/preprints/tc-2023-156/), [doi:10\.5194/tc\-2023\-156](https://doi.org/10.5194/tc-2023-156)\.
7. Daniel P\. Lowry, Holly K\. Han, Nicholas R\. Golledge, Natalya Gomez, Katelyn M\. Johnson, and Robert M\. McKay\. Ocean cavity regime shift reversed West Antarctic grounding line retreat in the late Holocene\. *Nature Communications*, April 2024\. [doi:10\.1038/s41467\-024\-47369\-3](https://doi.org/10.1038/s41467-024-47369-3)\.
8. Lu Niu, Gregor Knorr, Uta Krebs\-Kanzow, Paul Gierz, and Gerrit Lohmann\. Rapid Laurentide Ice Sheet growth preceding the Last Glacial Maximum due to summer snowfall\. *Nature Geoscience*, April 2024\. [doi:10\.1038/s41561\-024\-01419\-z](https://doi.org/10.1038/s41561-024-01419-z)\.
9. G\. J\. G\. Paxman, S\. S\. R\. Jamieson, A\. M\. Dolan, and M\. J\. Bentley\. Subglacial valleys preserved in the highlands of south and east Greenland record restricted ice extent during past warmer climates\. *The Cryosphere*, 18\(3\):1467–1493, 2024\. URL: [https://tc\.copernicus\.org/articles/18/1467/2024/](https://tc.copernicus.org/articles/18/1467/2024/), [doi:10\.5194/tc\-18\-1467\-2024](https://doi.org/10.5194/tc-18-1467-2024)\.
10. Clemens Schannwell, Uwe Mikolajewicz, Marie\-Luise Kapsch, and Florian Ziemen\. A mechanism for reconciling the synchronisation of Heinrich events and Dansgaard\-Oeschger cycles\. *Nature Communications*, April 2024\. [doi:10\.1038/s41467\-024\-47141\-7](https://doi.org/10.1038/s41467-024-47141-7)\.

### 2023

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10 changes: 0 additions & 10 deletions publications/submitted.bib
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DOI = {10.5194/egusphere-2024-457}
}

@Article{Depolli2024,
AUTHOR = {Depolli, M. and \v{Z}ebre, M. and Stepi\v{s}nik, U. and Kosec, G.},
TITLE = {Simulation of a former ice field with {PISM -- Snežnik} study case},
JOURNAL = {EGUsphere},
VOLUME = {2024},
YEAR = {2024},
PAGES = {1--30},
DOI = {10.5194/egusphere-2024-544}
}

@Article{Albrecht2023,
AUTHOR = {Albrecht, T. and Bagge, M. and Klemann, V.},
TITLE = {Feedback mechanisms controlling {A}ntarctic glacial cycle dynamics simulated with a coupled ice sheet--solid {E}arth model},
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1 change: 0 additions & 1 deletion publications/submitted/index.html
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<h3 id="2024">2024</h3>

<ol>
<li>M. Depolli, M. Žebre, U. Stepišnik, and G. Kosec. Simulation of a former ice field with PISM – Snežnik study case. <em>EGUsphere</em>, 2024:1–30, 2024. <a href="https://doi.org/10.5194/egusphere-2024-544">doi:10.5194/egusphere-2024-544</a>.</li>
<li>J. Feldmann, A. Levermann, and R. Winkelmann. Hysteresis of idealized, instability-prone outlet glaciers under variation of pinning-point buttressing. <em>EGUsphere</em>, 2024:1–23, 2024. <a href="https://doi.org/10.5194/egusphere-2024-457">doi:10.5194/egusphere-2024-457</a>.</li>
<li>Ward van Pelt and Thomas Frank. A new glacier thickness and bed map for Svalbard. <em>EGUsphere</em>, May 2024. <a href="https://doi.org/10.5194/egusphere-2024-1525">doi:10.5194/egusphere-2024-1525</a>.</li>
</ol>
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5 changes: 2 additions & 3 deletions publications/submitted_papers.md
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### 2024

1. M\. Depolli, M\. Žebre, U\. Stepišnik, and G\. Kosec\. Simulation of a former ice field with PISM – Snežnik study case\. *EGUsphere*, 2024:1–30, 2024\. [doi:10\.5194/egusphere\-2024\-544](https://doi.org/10.5194/egusphere-2024-544)\.
2. J\. Feldmann, A\. Levermann, and R\. Winkelmann\. Hysteresis of idealized, instability\-prone outlet glaciers under variation of pinning\-point buttressing\. *EGUsphere*, 2024:1–23, 2024\. [doi:10\.5194/egusphere\-2024\-457](https://doi.org/10.5194/egusphere-2024-457)\.
3. Ward van Pelt and Thomas Frank\. A new glacier thickness and bed map for Svalbard\. *EGUsphere*, May 2024\. [doi:10\.5194/egusphere\-2024\-1525](https://doi.org/10.5194/egusphere-2024-1525)\.
1. J\. Feldmann, A\. Levermann, and R\. Winkelmann\. Hysteresis of idealized, instability\-prone outlet glaciers under variation of pinning\-point buttressing\. *EGUsphere*, 2024:1–23, 2024\. [doi:10\.5194/egusphere\-2024\-457](https://doi.org/10.5194/egusphere-2024-457)\.
2. Ward van Pelt and Thomas Frank\. A new glacier thickness and bed map for Svalbard\. *EGUsphere*, May 2024\. [doi:10\.5194/egusphere\-2024\-1525](https://doi.org/10.5194/egusphere-2024-1525)\.

### 2023

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4 changes: 2 additions & 2 deletions sitemap.xml
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</url>
<url>
<loc>https://www.pism.io/img/news/vuw_phd_advert_nov2015.pdf</loc>
<lastmod>2024-07-07T01:15:07+00:00</lastmod>
<lastmod>2024-07-25T20:09:36+00:00</lastmod>
</url>
<url>
<loc>https://www.pism.io/usersmap/map.html</loc>
<lastmod>2024-07-07T01:15:10+00:00</lastmod>
<lastmod>2024-07-25T20:09:38+00:00</lastmod>
</url>
</urlset>
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