Elliptic curves with complex multiplication and Galois module structure.

Anupam Srivastav; Martin J. Taylor

Inventiones mathematicae (1990)

  • Volume: 99, Issue: 1, page 165-184
  • ISSN: 0020-9910; 1432-1297/e

How to cite

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Srivastav, Anupam, and Taylor, Martin J.. "Elliptic curves with complex multiplication and Galois module structure.." Inventiones mathematicae 99.1 (1990): 165-184. <http://eudml.org/doc/143754>.

@article{Srivastav1990,
author = {Srivastav, Anupam, Taylor, Martin J.},
journal = {Inventiones mathematicae},
keywords = {Galois module structure; torsion points on an elliptic curve with complex multiplication; rings of integers},
number = {1},
pages = {165-184},
title = {Elliptic curves with complex multiplication and Galois module structure.},
url = {http://eudml.org/doc/143754},
volume = {99},
year = {1990},
}

TY - JOUR
AU - Srivastav, Anupam
AU - Taylor, Martin J.
TI - Elliptic curves with complex multiplication and Galois module structure.
JO - Inventiones mathematicae
PY - 1990
VL - 99
IS - 1
SP - 165
EP - 184
KW - Galois module structure; torsion points on an elliptic curve with complex multiplication; rings of integers
UR - http://eudml.org/doc/143754
ER -

Citations in EuDML Documents

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  1. Philippe Cassou-Noguès, Anupam Srivastav, On Taylor's conjecture for Kummer orders
  2. Anupam Srivastav, Modules de Swan et courbes elliptiques à multiplication complexe
  3. Martin J. Taylor, Résolvandes et espaces homogènes principaux de schémas en groupe
  4. A. Agboola, A geometric description of the class invariant homomorphism
  5. Werner Bley, Robert Boltje, Lubin-Tate formal groups and module structure over Hopf orders
  6. Philippe Cassou-Nogues, Martin J. Taylor, Structures galoisiennes et courbes elliptiques
  7. Abdelmejid Bayad, Gilles Robert, Amélioration d'une congruence pour certains éléments de Stickelberger quadratiques
  8. Jean Gillibert, Invariants de classes : propriétés fonctorielles et applications à l’étude du noyau
  9. Philippe Cassou-Noguès, Martin J. Taylor, Espaces homogènes principaux, unités elliptiques et fonctions L
  10. Jean Gillibert, Variétés abéliennes et invariants arithmétiques

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