首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 15 毫秒
1.
 We exhibit an example of a line bundle M on a smooth complex projective variety Y s.t. M satisfies Property N 10 , the 10-module of a minimal resolution of the ideal of the embedding of Y by M is nonzero and M 2 does not satisfy Property N 10 . Thus this is a completely convincing example showing that surprisingly it is not true that if a line bundle M satisfies Property N p then any power of M satisfies Property N p . We recall that in [Ru] we proved the following statement: if M is a line bundle on a smooth complex projective variety and M satisfies Property N p then M s satisfies Property N p if sp. Received: 5 March 2001  相似文献   

2.
In this paper we study defining equations and syzygies among them of projective bundles. We prove that for a given p≥0, if a vector bundle on a smooth complex projective variety is sufficiently ample, then the embedding given by the tautological line bundle satisfies property Np.  相似文献   

3.
ABSTRACT

In this article, we prove that the inner projection of a projective curve with higher linear syzygies has also higher linear syzygies. Specifically, if a very ample line bundle ? on a smooth projective curve X satisfies property N p for p  ≥  1 and H 1 (? ? 2) =  0 , then ?( ?  q ) satisfies property N p ? 1 for any point q  ∈  X . We also give simple proofs of well-known theorems about syzygies and raise some questions related to the line bundles of degree 2 g which do not satisfy property N 1 .  相似文献   

4.
In this note we prove two theorems. In theorem 1 we prove that if M andN are two non-zero reflexive modules of finite projective dimensions over a Gorenstein local ring, such that Hom (M, N) is a third module of syzygies, then the natural homomorphismM* ⊗N → Hom (M, N) is an isomorphism. This extends the result in [7]. In theorem 2, we prove that projective dimension of a moduleM over a regular local ringR is less than or equal ton if and only if ExtR n (M, R) ⊗M → ExtR n (M, M) is surjective; in which case it is actually bijective. This extends the usual criterion for the projectivity of a module.  相似文献   

5.
Assuming m − 1 < kp < m, we prove that the space C (M, N) of smooth mappings between compact Riemannian manifolds M, N (m = dim M) is dense in the Sobolev space W k,p (M, N) if and only if π m−1(N) = {0}. If π m−1(N) ≠ {0}, then every mapping in W k,p (M, N) can still be approximated by mappings MN which are smooth except in finitely many points.  相似文献   

6.
We study the Hopfield model at temperature 1, when thenumber M(N) of patterns grows a bit slower than N. We reach a goodunderstanding of the model whenever M(N)≤N/(log N)11. For example, we show that if M(N)→∞, for two typical configurations σ 1, σ 2, (∑ i N σ1 i σ2 i )2 is close to NM(N). Received: 15 December 1999 / Revised version: 8 December 2000 / Published online: 23 August 2001  相似文献   

7.
 The maximal Seshadri number μ(L) of an ample line bundle L on a smooth projective variety X measures the local positivity of the line bundle L at a general point of X. By refining the method of Ein-Küchle-Lazarsfeld, lower bounds on μ(L) are obtained in terms of L n , n=dim(X), for a class of varieties. The main idea is to show that if a certain lower bound is violated, there exists a non-trivial foliation on the variety whose leaves are covered by special curves. In a number of examples, one can show that such foliations must be trivial and obtain lower bounds for μ(L). The examples include the hyperplane line bundle on a smooth surface in ℙ3 and ample line bundles on smooth threefolds of Picard number 1. Received: 29 June 2001 / Published online: 16 October 2002 RID="⋆" ID="⋆" Supported by Grant No. 98-0701-01-5-L from the KOSEF. RID="⋆⋆" ID="⋆⋆" Supported by Grant No. KRF-2001-041-D00025 from the KRF.  相似文献   

8.
Let ϕ∈Mod(S) be an element of the mapping class group of a surface S. We classify algebraic and geometric limits of sequences {Q i X,Y)} i=1 of quasi-Fuchsian hyperbolic 3-manifolds ranging in a Bers slice. When ϕ has infinite order with finite-order restrictions, there is an essential subsurface D ϕS so that the geometric limits have homeomorphism type S×ℝ-D ϕ×{0}. Typically, ϕ has pseudo-Anosov restrictions, and D ϕ has components with negative Euler characteristic; these components correspond to new asymptotically periodic simply degenerate ends of the geometric limit. We show there is an s≥1 depending on ϕ and bounded in terms of S so that {Q si X,Y)} i=1 converges algebraically and geometrically, and we give explicit quasi-isometric models for the limits. Oblatum 4-I-1999 & 19-VII-2000?Published online: 30 October 2000  相似文献   

9.
In this paper, the notions of (p, λ)-Koszul algebra and (p, λ)-Koszul module are introduced. Some criteria theorems for a positively graded algebra A to be (p, λ)-Koszul are given. The notion of weakly (p, λ)-Koszul module is defined as well and let WK λ p (A) denote the category of weakly (p, λ)-Koszul modules. We show that MWK λ p (A) if and only if it can be approximated by (p, λ)-Koszul submodules, which is equivalent to that G(M) is a (p, λ)-Koszul module, where G(M) denotes the associated graded module of M. As applications, the relationships of the minimal graded projective resolutions of M, G(M) and (p, λ)-Koszul submodules are established. In particular, for a module MWK λ p (A) we prove that ⊕ i≥0 Ext A i (M,A 0) ∈ gr 0(E(A)), we also get as a consequence that the finitistic dimension conjecture is valid in WK λ p (A) under certain conditions.  相似文献   

10.
For every product preserving bundle functor T μ on fibered manifolds, we describe the underlying functor of any order (r, s, q), srq. We define the bundle Kk,lr,s,q YK_{k,l}^{r,s,q} Y of (k, l)-dimensional contact elements of the order (r, s, q) on a fibered manifold Y and we characterize its elements geometrically. Then we study the bundle of general contact elements of type μ. We also determine all natural transformations of Kk,lr,s,q YK_{k,l}^{r,s,q} Y into itself and of T( Kk,lr,s,q Y )T\left( {K_{k,l}^{r,s,q} Y} \right) into itself and we find all natural operators lifting projectable vector fields and horizontal one-forms from Y to Kk,lr,s,q YK_{k,l}^{r,s,q} Y .  相似文献   

11.
Let X be a smooth projective variety of dimension n over an algebraically closed field k with char(k)=p>0 and F:XX 1 be the relative Frobenius morphism. For any vector bundle W on X, we prove that instability of F * W is bounded by instability of W⊗T1 X ) (0≤ℓ≤n(p-1)) (Corollary 4.9). When X is a smooth projective curve of genus g≥2, it implies F * W being stable whenever W is stable. Dedicated to Professor Zhexian Wan on the occasion of his 80th birthday.  相似文献   

12.
In this short note we show that for any pair of positive integers (d, n) with n > 2 and d > 1 or n = 2 and d > 4, there always exist projective varieties X ? ? N of dimension n and degree d and an integer s 0 such that Hilb s (X) is reducible for all s ≥ s 0. X will be a projective cone in ? N over an arbitrary projective variety Y ? ? N?1. In particular, we show that, opposite to the case of smooth surfaces, there exist projective surfaces with a single isolated singularity which have reducible Hilbert scheme of points.  相似文献   

13.
Given an étale quotient q : XY of smooth projective varieties we relate the simple Seshadri constant of a line bundle M on Y with the multiple Seshadri constant of q * M in the points of the fiber. We apply this method to compute the Seshadri constant of polarized abelian surfaces in the points of a finite subgroup.   相似文献   

14.
In the paper, we obtain the existence of symmetric or monotone positive solutions and establish a corresponding iterative scheme for the equation (ϕ p (u′))′+q(t)f(u) = 0, 0 < t < 1, where ϕ p (s):= |s| p−2 s, p > 1, subject to nonlinear boundary condition. The main tool is the monotone iterative technique. Here, the coefficient q(t) may be singular at t = 0; 1.  相似文献   

15.
Let M 2n be a closed smooth manifold homotopy equivalent to the complex projective space ℂP(n). It is known that the first Pontrjagin class p 1(M) of M 2n has the form (n+1+24α(M))u 2 for some integer α(M) where u is a generator of H 2(M; ℤ). We prove that α(M) is even when n is even but not divisible by 64.  相似文献   

16.
For natural numbers r,s,q,m,n with srq we determine all natural functions g: T *(J (r,s,q)(Y, R 1,1)0)*R for any fibered manifold Y with m-dimensional base and n-dimensional fibers. For natural numbers r,s,m,n with sr we determine all natural functions g: T *(J (r,s) (Y, R)0)*R for any Y as above.  相似文献   

17.
Let W be a standard Brownian motion, and define Y(t)= ∫0 t ds/W(s) as Cauchy's principal value related to local time. We determine: (a) the modulus of continuity of Y in the sense of P. Lévy; (b) the large increments of Y. Received: 1 April 1999 / Revised version: 27 September 1999 / Published online: 14 June 2000  相似文献   

18.
This paper deals with syzygies of the ideals of the Veronese embeddings. By Green’s Theorem we know thatO P n (d) satisfies Green-Lazarsfeld’s PropertyN pd≥p, ∀n. By Ottaviani-Paoletti’s theorem ifn≥2, d≥3 and 3d−2≤p thenO P n (d) does not satisfy PropertyN p. The casesn≥3, d≥3, d<p<3d−2 are still open (exceptn=d=3). Here we deal with one of these cases, namely we prove thatO P n (3) satisfies PropertyN 4n. Besides we prove thatO P n (d) satisfiesN pn≥p iffO P n (d) satisfiesN p.
Sunto L’argomento di questo articolo sono le sizigie degli ideali delle varietà di Veronese. Per il teorema di Green sappiamo cheO P n (d) soddisfa la proprietàN p di Green-Lazarsfeld ∀d≥p, ∀n. Per il teorema di Ottaviani-Paoletti sen≥2, d≥3 and 3d−2≤p alloraO P n (d) non soddisfa la ProprietàN p. I casin≥3, d≥3, d<p<3d−2 sono ancora aperti (eccetton=d=3). Qui consideriamo uno di tali casi, precisamente proviamo cheO P n (3) soddisfa la ProprietàN 4n. Inoltre proviamo cheO P n (d) soddisfaN pn≥p se e solo seO P p (d) satisfiesN p.
  相似文献   

19.
We prove that Lipschitz mappings are dense in the Newtonian–Sobolev classes N 1,p (X, Y) of mappings from spaces X supporting p-Poincaré inequalities into a finite Lipschitz polyhedron Y if and only if Y is [p]-connected, π 1(Y) = π 2(Y) = · · · = π [p](Y) = 0, where [p] is the largest integer less than or equal to p. This work was supported by the NSF grant DMS-0500966.  相似文献   

20.
Let S be a smooth projective surface over C polarized by a 2-very ample line bundle L=O S(L), i.e. for any 0-dimensional subscheme (Z,O Z ) of length 3 the restriction map Γ(L)→Γ(L⊗O Z) is a surjection. This generalization of very ampleness was recently introduced by M. Beltrametti and A.J. Sommese. The authors prove that, if L·L≥13, the adjoint line bundleK SL is 2-very ample apart from a list of well understood exceptions and up to contracting down the smooth rational curves E such that E·E=−1, L·E=2. The appendix contains an inductive argument in order to extend the result in higher dimension.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号