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[1] Andrea Pulita. Solvability of rank one $p$-adic differential and $q$-difference equations over the Amice ring. Contemporary Mathematics 665 (2016) 251-277.
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[2] Mitya Boyarchenko and Jared Weinstein. Maximal varieties and the local Langlands correspondence for $GL(n)$. J. Amer. Math. Soc. 29 (2016) 177-236.
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[3] Frank Herrlich. $p$-adic origamis. Contemporary Mathematics 629 (2014) 225-243.
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[4] Matthew Baker, Sam Payne and Joseph Rabinoff. On the structure of non-archimedean analytic curves. Contemporary Mathematics 605 (2013) 93-121.
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[5] Antoine Chambert-Loir. Diophantine geometry and analytic spaces. Contemporary Mathematics 605 (2013) 161-179.
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[6] Mihran Papikian. Non-archimedean uniformization and monodromy pairing. Contemporary Mathematics 605 (2013) 123-160.
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[7] Brian Osserman and Joseph Rabinoff. Lifting nonproper tropical intersections. Contemporary Mathematics 605 (2013) 15-44.
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[8] Peter Scholze. The Langlands-Kottwitz method and deformation spaces of $p$-divisible groups. J. Amer. Math. Soc. 26 (2013) 227-259.
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[9] Payman L Kassaei. Modularity lifting in parallel weight one. J. Amer. Math. Soc. 26 (2013) 199-225.
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[10] Matthew Baker and Robert Rumely. Brief overview of Berkovich's theory. Math. Surveys Monogr. 159 (2010) 405-415.
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[11] Matthew Baker and Robert Rumely. Applications to the dynamics of rational maps. Math. Surveys Monogr. 159 (2010) 291-375.
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[12] Matthew Baker and Robert Rumely. $\mathbb {R}$-trees and Gromov hyperbolicity. Math. Surveys Monogr. 159 (2010) 393-404.
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[13] Matthew Baker and Robert Rumely. Harmonic functions. Math. Surveys Monogr. 159 (2010) 145-192.
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[14] Matthew Baker and Robert Rumely. Some results from analysis and topology. Math. Surveys Monogr. 159 (2010) 377-391.
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[15] Matthew Baker and Robert Rumely. Metrized graphs. Math. Surveys Monogr. 159 (2010) 49-72.
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[16] Matthew Baker and Robert Rumely. The Berkovich unit disc. Math. Surveys Monogr. 159 (2010) 1-18.
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[17] Matthew Baker and Robert Rumely. The Berkovich projective line. Math. Surveys Monogr. 159 (2010) 19-47.
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[18] Matthew Baker and Robert Rumely. Potential Theory and Dynamics on the Berkovich Projective Line. Math. Surveys Monogr. 159 (2010) MR MR2599526.
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[19] Matthew Baker and Robert Rumely. The Laplacian on the Berkovich projective line. Math. Surveys Monogr. 159 (2010) 87-119.
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[20] Matthew Baker and Robert Rumely. Multiplicities. Math. Surveys Monogr. 159 (2010) 249-290.
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[21] Matthew Baker and Robert Rumely. The Hsia kernel. Math. Surveys Monogr. 159 (2010) 73-85.
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[22] Matthew Baker and Robert Rumely. Capacity theory. Math. Surveys Monogr. 159 (2010) 121-144.
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[23] Matthew Baker and Robert Rumely. Subharmonic functions. Math. Surveys Monogr. 159 (2010) 193-248.
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[24] Matthew Baker, Brian Conrad, Samit Dasgupta, Kiran S. Kedlaya and Jeremy Teitelbaum; , David Savitt and Dinesh S. Thakur (Editors). $p$-adic Geometry. University Lecture Series 45 (2008) MR MR2482343.
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[25] Samit Dasgupta and Jeremy Teitelbaum. The $p$-adic upper half plane. University Lecture Series 45 (2008) 65-121.
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[26] Vladimir Berkovich. Non-archimedean analytic geometry: first steps. University Lecture Series 45 (2008) 1-7.
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[27] Brian Conrad. Several approaches to non-archimedean geometry. University Lecture Series 45 (2008) 9-63.
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[28] Kiran S. Kedlaya. $p$-adic cohomology: from theory to practice. University Lecture Series 45 (2008) 175-203.
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[29] Matthew Baker. An introduction to Berkovich analytic spaces and non-archimedean potential theory on curves. University Lecture Series 45 (2008) 123-174.
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[30] Gebhard Böckle and Urs Hartl. Uniformizable families of $t$-motives. Trans. Amer. Math. Soc. 359 (2007) 3933-3972. MR 2302519.
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Results: 1 to 30 of 33 found      Go to page: 1 2


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