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minimal model program : ウィキペディア英語版
minimal model program
In algebraic geometry, the minimal model program is part of the birational classification of algebraic varieties. Its goal is to construct a birational model of any complex projective variety which is as simple as possible. The subject has its origins in the classical birational geometry of surfaces studied by the Italian school, and is currently an active research area within algebraic geometry.
==Outline==
The basic idea of the theory is to simplify the birational classification of varieties by finding, in each birational equivalence class, a variety which is "as simple as possible". The precise meaning of this phrase has evolved with the development of the subject; originally for surfaces, it meant finding a smooth variety X for which any birational morphism f: X \rightarrow X' is an isomorphism.
In the modern formulation, the goal of the theory is as follows. Suppose we are given a projective variety X, which for simplicity is assumed nonsingular. There are two cases:
*If X has Kodaira dimension \kappa(X,K_X)=-1, we want to find a variety X^\prime birational to X, and a morphism f: X' \rightarrow Y to a projective variety Y such that dim Y< dimX', with the anticanonical class -K_F of a general fibre F being ample. Such a morphism is called a ''Fano fibre space''.
* If \kappa(X,K_X) is at least 0, we want to find X' birational to X, with the canonical class K_ nef. In this case, X' is a ''minimal model'' for X.
The question of nonsingularity of the varieties X' and X appearing above is an important one. It seems natural to hope that if we start with smooth X, then we can always find a minimal model or Fano fibre space inside the category of smooth varieties. However, this is not true, and so it becomes necessary to consider singular varieties also. The singularities that appear are called terminal singularities.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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