SearcharxivSearch

arXiv · math/0305347

Refinements of the Morse stratification of the normsquare of the moment map

Abstract

Let X be any nonsingular complex projective variety on which a complex reductive group G acts linearly, and let X^{ss} and X^s be the sets of semistable and stable points of X in the sense of Mumford's geometric invariant theory. Then X has a G-equivariantly perfect stratification by locally closed nonsingular G-invariant subvarieties with X^{ss} as an open stratum, which can be obtained as the Morse stratification of the normsquare of a moment map for the action of a maximal compact subgroup K of G. In this note this stratification is refined to obtain stratifications of X by locally closed nonsingular G-invariant subvarieties with X^s as an open stratum. The strata can be defined inductively in terms of the sets of stable points of closed nonsingular subvarieties of X acted on by reductive subgroups of G, and their projectivised normal bundles. When G is abelian another way to obtain a refined stratification is by perturbing the moment map; the refinement is then itself equivariantly perfect, and its strata can be described in terms of the sets of stable points of linear actions of reductive subgroups of G for which semistability and stability coincide. This is useful even when G is nonabelian, since important questions about the cohomology of the GIT quotient (or Marsden-Weinstein reduction) X//G can be reduced to questions about the quotient of X by a maximal torus of G.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Frances Kirwan. 2003-05-24. Refinements of the Morse stratification of the normsquare of the moment map. https://arxiv.org/abs/math/0305347

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

Perverse Euler Characteristics of Hermitian Locally Symmetric Spaces

We prove that finite-volume locally Hermitian symmetric spaces of noncompact type have nonnegative perverse Euler characteristics. To show this, we obtain a nefness result for the logarithmic cotangent bundle of a smooth toroidal compactification. Combining this with a positivity criterion for Euler characteristics of perverse sheaves, we deduce the nonnegativity result. We further prove that the inequality is strict for perverse sheaves with full support. As applications, we get nonnegativity results for perverse Euler characteristics on various moduli spaces.

math.AG

Coupled Pklt Tuples and Varieties of Pklt Type

We introduce asymptotic multiplier ideal sheaves and log canonical thresholds associated with tuples of pseudoeffective divisors on a projective klt pair. We prove that the threshold of a coupled potentially klt tuple is computed by a quasi-monomial valuation. For varieties of potentially klt type, we prove that every big divisor admits a birational Zariski decomposition with semiample positive part. We also prove finite generation of multisection rings of big divisors and give a criterion for a variety of potentially klt type to be a Mori dream space.

math.AG

Graded Betti numbers of general curves of large degree

Let $C$ be a smooth projective complex curve of genus $g$ and gonality $k$, and $L$ be a very ample line bundle on $C$. When $L$ has sufficiently large degree, the vanishing and nonvanishing of the Koszul cohomology groups $K_{p,q}(C,L)$ have been determined previously, but the exact values of the graded Betti numbers $\kappa_{p,q}(C, L)$ remain largely unknown. In this paper, we give explicit closed formulas for all graded Betti numbers $\kappa_{p,q}(C, L)$ when the Brill--Noether locus $W_k^1(C)$ has the expected dimension and $H^1(C, L \otimes \omega_C^{-1})=0$. Consequently, we determine the complete Betti table for a general curve when $\deg L \geq 4g-3$ or when $\deg L \geq 3g-3$ and $L$ is general. We also explicitly compute the Boij--S\"{o}derberg coefficient of the section ring $R(C, L)$ governing asymptotic purity, and show eventual monotonicity of the remaining coefficients: they decrease for hyperelliptic curves and increase under a natural generic reducedness assumption on the relevant Brill--Noether loci.

math.AG