04678nam 22007695 450 991034932720332120200704093440.0981-329-301-210.1007/978-981-32-9301-4(CKB)4100000009606215(MiAaPQ)EBC5946207(DE-He213)978-981-32-9301-4(PPN)258059435(EXLCZ)99410000000960621520191017d2019 u| 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierMordell–Weil Lattices /by Matthias Schütt, Tetsuji Shioda1st ed. 2019.Singapore :Springer Singapore :Imprint: Springer,2019.1 online resource (436 pages)Ergebnisse der Mathematik und ihrer Grenzgebiete. 3. Folge / A Series of Modern Surveys in Mathematics,0071-1136 ;70981-329-300-4 Introduction -- Lattices -- Elliptic Curves -- Algebraic surfaces -- Elliptic surfaces -- Mordell--Weil Lattices -- Rational Elliptic Surfaces -- Rational elliptic surfaces and E8-hierarchy -- Galois Representations and Algebraic Equations -- Elliptic K3 surfaces.This book lays out the theory of Mordell–Weil lattices, a very powerful and influential tool at the crossroads of algebraic geometry and number theory, which offers many fruitful connections to other areas of mathematics. The book presents all the ingredients entering into the theory of Mordell–Weil lattices in detail, notably, relevant portions of lattice theory, elliptic curves, and algebraic surfaces. After defining Mordell–Weil lattices, the authors provide several applications in depth. They start with the classification of rational elliptic surfaces. Then a useful connection with Galois representations is discussed. By developing the notion of excellent families, the authors are able to design many Galois representations with given Galois groups such as the Weyl groups of E6, E7 and E8. They also explain a connection to the classical topic of the 27 lines on a cubic surface. Two chapters deal with elliptic K3 surfaces, a pulsating area of recent research activity which highlights many central properties of Mordell–Weil lattices. Finally, the book turns to the rank problem—one of the key motivations for the introduction of Mordell–Weil lattices. The authors present the state of the art of the rank problem for elliptic curves both over Q and over C(t) and work out applications to the sphere packing problem. Throughout, the book includes many instructive examples illustrating the theory.Ergebnisse der Mathematik und ihrer Grenzgebiete. 3. Folge / A Series of Modern Surveys in Mathematics,0071-1136 ;70Algebraic geometryCommutative algebraCommutative ringsAlgebraField theory (Physics)Category theory (Mathematics)Homological algebraNonassociative ringsRings (Algebra)Algebraic Geometryhttps://scigraph.springernature.com/ontologies/product-market-codes/M11019Commutative Rings and Algebrashttps://scigraph.springernature.com/ontologies/product-market-codes/M11043Field Theory and Polynomialshttps://scigraph.springernature.com/ontologies/product-market-codes/M11051Category Theory, Homological Algebrahttps://scigraph.springernature.com/ontologies/product-market-codes/M11035Non-associative Rings and Algebrashttps://scigraph.springernature.com/ontologies/product-market-codes/M11116Algebraic geometry.Commutative algebra.Commutative rings.Algebra.Field theory (Physics).Category theory (Mathematics).Homological algebra.Nonassociative rings.Rings (Algebra).Algebraic Geometry.Commutative Rings and Algebras.Field Theory and Polynomials.Category Theory, Homological Algebra.Non-associative Rings and Algebras.511.33Schütt Matthiasauthttp://id.loc.gov/vocabulary/relators/aut782093Shioda Tetsujiauthttp://id.loc.gov/vocabulary/relators/autMiAaPQMiAaPQMiAaPQBOOK9910349327203321Mordell–Weil Lattices2508242UNINA