Logarithmic differential operators and logarithmic de Rham complexes relative to a free divisor
Francisco J. Calderón-Moreno (1999)
Annales scientifiques de l'École Normale Supérieure
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Francisco J. Calderón-Moreno (1999)
Annales scientifiques de l'École Normale Supérieure
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Shigetaka Fukuda (2004)
Open Mathematics
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Let (X Δ) be a four-dimensional log variety that is projective over the field of complex numbers. Assume that (X, Δ) is not Kawamata log terminal (klt) but divisorial log terminal (dlt). First we introduce the notion of “log quasi-numerically positive”, by relaxing that of “numerically positive”. Next we prove that, if the log canonical divisorK X+Δ is log quasi-numerically positive on (X, Δ) then it is semi-ample.
W. Klotz (1977)
Acta Arithmetica
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Kazuya Kato, Takeshi Saito (2004)
Publications Mathématiques de l'IHÉS
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In [6], S. Bloch conjectures a formula for the Artin conductor of the ℓ-adic etale cohomology of a regular model of a variety over a local field and proves it for a curve. The formula, which we call the conductor formula of Bloch, enables us to compute the conductor that measures the wild ramification by using the sheaf of differential 1-forms. In this paper, we prove the formula in arbitrary dimension under the assumption that the reduced closed fiber has normal crossings.
Michele Torielli (2013)
Annales de l’institut Fourier
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We study deformations of free and linear free divisors. We introduce a complex similar to the de Rham complex whose cohomology calculates the deformation spaces. This cohomology turns out to be zero for all reductive linear free divisors and to be constructible for Koszul free divisors and weighted homogeneous free divisors.
Bloch, Spencer, Esnault, Hélène (2000)
Annals of Mathematics. Second Series
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Osamu Hyodo (1991)
Compositio Mathematica
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D. Suryanarayana, V. Siva Rama Prasad (1971)
Acta Arithmetica
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Fukuda, Shigetaka (2002)
International Journal of Mathematics and Mathematical Sciences
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Broughan, Kevin A. (2002)
Integers
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