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Introduction to Complex Hyperbolic Spaces

Introduction to Complex Hyperbolic Spaces
Catalogue Information
Field name Details
Dewey Class 515
Title Introduction to Complex Hyperbolic Spaces ([EBook]) / by Serge Lang.
Author Lang, Serge. , 1927-2005
Other name(s) SpringerLink (Online service)
Publication New York, NY : Springer , 1987.
Physical Details VIII, 272 pages : online resource.
ISBN 9781475719451
Summary Note Since the appearance of Kobayashi's book, there have been several re­ sults at the basic level of hyperbolic spaces, for instance Brody's theorem, and results of Green, Kiernan, Kobayashi, Noguchi, etc. which make it worthwhile to have a systematic exposition. Although of necessity I re­ produce some theorems from Kobayashi, I take a different direction, with different applications in mind, so the present book does not super­ sede Kobayashi's. My interest in these matters stems from their relations with diophan­ tine geometry. Indeed, if X is a projective variety over the complex numbers, then I conjecture that X is hyperbolic if and only if X has only a finite number of rational points in every finitely generated field over the rational numbers. There are also a number of subsidiary conjectures related to this one. These conjectures are qualitative. Vojta has made quantitative conjectures by relating the Second Main Theorem of Nevan­ linna theory to the theory of heights, and he has conjectured bounds on heights stemming from inequalities having to do with diophantine approximations and implying both classical and modern conjectures. Noguchi has looked at the function field case and made substantial progress, after the line started by Grauert and Grauert-Reckziegel and continued by a recent paper of Riebesehl. The book is divided into three main parts: the basic complex analytic theory, differential geometric aspects, and Nevanlinna theory. Several chapters of this book are logically independent of each other.:
Contents note 0 Preliminaries -- I Basic Properties -- II Hyperbolic Imbeddings -- III Brody’s Theorem -- IV Negative Curvature on Line Bundles -- V Curvature on Vector Bundles -- VI Nevanlinna Theory -- VII Applications to Holomorphic Curves in Pn -- VIII Normal Families of the Disc in Pn Minus Hyperplanes.
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