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A HIGHER GROSS-ZAGIER FORMULA AND THE STRUCTURE OF SELMER GROUPS

  • Chan Ho Kim*
  • *Corresponding author for this work
  • Korea Institute for Advanced Study

Research output: Contribution to journalJournal articlepeer-review

Abstract

We describe a Kolyvagin system-theoretic refinement of Gross- Zagier formula by comparing Heegner point Kolyvagin systems with Kurihara numbers when the root number of a rational elliptic curve E over an imaginary quadratic field K is -1. When the root number of E over K is 1, we first establish the structure theorem of the p∞-Selmer group of E over K. The description is given by the values of certain families of quaternionic automorphic forms, which is a part of bipartite Euler systems. By comparing bipartite Euler systems with Kurihara numbers, we also obtain an analogous refinement of Waldspurger formula. No low analytic rank assumption is imposed in both refinements. We also prove the equivalence between the non-triviality of various "Kolyvagin systems" and the corresponding main conjecture localized at the augmentation ideal. As consequences, we obtain new applications of (weaker versions of) the Heegner point main conjecture and the anticyclotomic main conjecture to the structure of p∞-Selmer groups of elliptic curves of arbitrary rank. In particular, the Heegner point main conjecture localized at the augmentation ideal implies the strong rank one p-converse to the theorem of Gross-Zagier and Kolyvagin.

Original languageEnglish
Pages (from-to)3691-3725
Number of pages35
JournalTransactions of the American Mathematical Society
Volume377
Issue number5
DOIs
StatePublished - 2024.05

Keywords

  • bipartite Euler systems
  • Heegner point Kolyvagin systems
  • Kato's Kolyvagin systems
  • Kurihara numbers
  • modular symbols
  • Refined Iwasawa theory

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