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This new-in-paperback edition provides a general introduction to algebraic and arithmetic geometry, starting with the theory of schemes, followed by applications to arithmetic surfaces and to the theory of reduction of algebraic curves. The first part introduces basic objects such as schemes, morphisms, base change, local properties (normality, regularity, Zariski's Main Theorem) This is followed by the more global aspect: coherent sheaves and a finiteness theorem for their cohomology groups. Then follows a chapter on sheaves of differentials, dualizing sheaves, and Grothendieck's duality theory. The first part ends with the theorem of Riemann-Roch and its application to the study of smooth projective curves over a field. Singular curves are treated through a detailed study of the Picard group. The second part starts with blowing-ups and desingularization (embedded or not) of fibered surfaces over a Dedekind ring that leads on to intersection theory on arithmetic surfaces. Castelnuovo's criterion is proved and also the existence of the minimal regular model. This leads to the study of reduction of algebraic curves. The case of elliptic curves is studied in detail. The book concludes with the fundamental theorem of stable reduction of Deligne-Mumford. This book is essentially self-contained, including the necessary material on commutative algebra. The prerequisites are few, and including many examples and approximately 600 exercises, the book is ideal for graduate students.
This text investigates the foundational principles of algebraic geometry and their specific applications to arithmetic curves and surfaces. Qing Liu, a recognized expert in the field, provides a comprehensive framework that bridges the gap between abstract scheme theory and concrete arithmetic applications. The book utilizes a structured pedagogical approach, integrating commutative algebra with advanced geometric theory to guide the reader through complex proofs and theorems. By focusing on the reduction of algebraic curves, the author establishes a rigorous baseline for understanding modern arithmetic geometry.
What You Will Find
Experts and graduate students frequently cite this work as a foundational and self-contained resource for mastering the transition from basic algebraic geometry to arithmetic applications. The text is noted for its academic density and rigorous mathematical depth, making it a standard reference for advanced study in the field.
Page Count:
577
Publication Date:
2006-08-24
Publisher:
Oxford University Press, USA
ISBN-10:
0199202494
ISBN-13:
9780199202492
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