arXiv Analytics

Sign in

arXiv:0708.2451 [math.NT]AbstractReferencesReviewsResources

Nearly Ordinary Galois Deformations over Arbitrary Number Fields

Frank Calegari, Barry Mazur

Published 2007-08-17, updated 2008-01-16Version 2

Let K be an arbitrary number field, and let rho: Gal(Kbar/K) -> GL_2(E) be a nearly ordinary irreducible geometric Galois representation. In this paper, we study the nearly ordinary deformations of rho. When K is totally real and rho is modular, results of Hida imply that the nearly ordinary deformation space associated to rho contains a Zariski dense set of points corresponding to "automorphic" Galois representations. We conjecture that if K is_not_ totally real, then this is never the case, except in three exceptional cases, corresponding to (1) "base change", (2) "CM" forms, and (3) "Even" representations. The latter case conjecturally can only occur if the image of rho is finite. Our results come in two flavours. First, we prove a general result for Artin representations, conditional on a strengthening of Leopoldt's conjecture. Second, when K is an imaginary quadratic field, we prove an unconditional result that implies the existence of "many" positive dimensional components (of certain deformation spaces) that do not contain infinitely many classical points. Also included are some speculative remarks about "p-adic functorality", as well as some remarks on how our methods should apply to n-dimensional representations of Gal(Qbar/Q) when n > 2.

Related articles: Most relevant | Search more
arXiv:1511.05108 [math.NT] (Published 2015-11-16)
Computing all elliptic curves over an arbitrary number field with prescribed primes of bad reduction
arXiv:1209.5309 [math.NT] (Published 2012-09-24, updated 2013-07-04)
Minimal modularity lifting for GL2 over an arbitrary number field
arXiv:2007.10949 [math.NT] (Published 2020-07-21)
Subconvexity for $L$-Functions on $\mathrm{GL}_3$ over Number Fields