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Web-page of the Geneva University tropical group
PhD graduated: Kristin Shaw (December 2011), Lionel Lang (December 2014), Nikita Kalinin (December 2015), Mikhail Shkolnikov (June 2017), Johannes Josi (February 2018).
Current members:Thomas Blomme, Weronika Czerniawska, Grigory Mikhalkin, Alina Pavlikova, Mikhail Pirogov.
Alumni: Ivan Bazhov, Johan Bjorklund, Rémi Crétois, Yi-Ning Hsiao, Jens Forsgard, Maxim Karev, Ilya Karzhemanov, Sergei Lanzat, Michele Nesci, Johannes Rau, Arthur Renaudineau.
We organize several seminars:
Séminaire "Fables Géométriques".
pre-2017 Battelle Seminar and
Tropical working group Seminar.
Also, you can check how tropical curves (and hypersurfaces, in general) emerge from abelian sandpile models: tropicalsand
Seminars and conferences
Seminar “Fables Géométriques”
Monday, Dec, 20th, 16h15 - 18h15
On the asymptotics of Arakelov invariants
We will discuss the asymptotics of invariants of Riemann surfaces motivated by Arakelov theory. These invariants play a fundamental role in bounds for the number of geometric torsion points on curves. We will show that their asymptotic behaviour in families of degenerating Riemann surfaces is controlled by their tropical counterparts.
Geneva-Neuchâtel Symplectic Geometry Seminar
Schedule and more details: seminar page
We had our page http://www.unige.ch/math/folks/langl/battelle/
Also, there is Séminaire de Géométrie Tropicale in Paris:http://erwan.brugalle.perso.math.cnrs.fr/Seminaires/Geotrop/Geotrop.html
About this page
If you want to register, say me (Misha Shkolnikov). You should be approved user to edit pages. You can write here something. (Create a small web page about you, write about you interests, explain tropical philosophy of our group, upload articles etc).
Page creating is simple, just add internal link on non-existing page from existing.
For example еуые: .
Google “docuwiki …” to know how to do something if it is not clear.
Send me your nickname and password - to have right to create and edit pages.
Latex support is here. $\int \mathbb C + \prod\limits_{x\to \infty} f^g$