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1.
We give a coarse classification of constant mean curvature (CMC) immersions of cylinders into via the loop group method. Particularly for this purpose, we consider double loop groups and a new type of ``potentials' which are meromorphic 1-forms on Riemann surfaces.

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2.
We define surfaces with harmonic inverse mean curvature in space forms and generalize a theorem due to Lawson by which surfaces of constant mean curvature in one space form isometrically correspond to those in another. We also obtain an immersion formula, which gives a deformation family for these surfaces.

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3.
We prove that many complete, noncompact, constant mean curvature (CMC) surfaces are nondegenerate; that is, the Jacobi operator Δf + | Af |2 has no L2 kernel. In fact, if ∑ has genus zero with k ends, and if f (∑) is embedded (or Alexandrov immersed) in a half-space, then we find an explicit upper bound for the dimension of the L2 kernel in terms of the number of non-cylindrical ends. Our main tool is a conjugation operation on Jacobi fields which linearizes the conjugate cousin construction. Consequences include partial regularity for CMC moduli space, a larger class of CMC surfaces to use in gluing constructions, and a surprising characterization of CMC surfaces via spinning spheres. R.K. partially supported by NSF grants DMS-0076085 at GANG/UMass and DMS-9810361 at MSRI, and by a FUNCAP grant in Fortaleza, Brazil. J.R. partially supported by an NSF VIGRE grant at Utah. Received: January 2005; Accepted: June 2005  相似文献   

4.
Given H≥0 and bounded convex curves α1, ...,⇌n, α in the plane z=0 bounding domains D1, …, Dn, D, respectively, with if i ∈ j and with Di ⊂ D, we obtain several results proving the existence of a constanth depending only on H and on the geometry of the curves αi, α such that the Dirichlet problem for the constant mean curvature H equation: where may accept or not a solution.  相似文献   

5.
We classify the profile curves of all surfaces with constant mean curvature in the product space , which are invariant under the action of a 1-parameter subgroup of isometries. The author was supported by INdAM (Italy) and Fapesp (Brazil).  相似文献   

6.
We prove a Bernstein type theorem for constant mean curvature hypersurfaces in ℝ n+1 under certain growth conditions for n ⩽ 3. Our result extends the case when M is a minimal hypersurface in the same condition.   相似文献   

7.
Non-spherical hypersurfaces inE 4 with non-zero constant mean curvature and constant scalar curvature are the only hypersurfaces possessing the following property: Its position vector can be written as a sum of two non-constant maps, which are eigenmaps of the Laplacian operator with corresponding eigenvalues the zero and a non-zero constant.  相似文献   

8.
9.
In this paper we study the behavior of the scalar curvature S of a complete hypersurface immersed with constant mean curvature into a Riemannian space form of constant curvature, deriving a sharp estimate for the infimum of S. Our results will be an application of a weak Omori-Yau maximum principle due to Pigola, Rigoli, Setti (2005) [17].  相似文献   

10.
This article concerns the structure of complete noncompact stable hypersurfaces M n with constant mean curvature H > 0 in a complete noncompact oriented Riemannian manifold N n+1. In particular, we show that a complete noncompact stable constant mean curvature hypersurface M n , n = 5, 6, in the Euclidean space must have only one end. Any such hypersurface in the hyperbolic space with , respectively, has only one end.  相似文献   

11.
LetM be a compact minimal surface inS 3. Y. J. Hsu[5] proved that if S222, thenM is either the equatorial sphere or the Clifford torus, whereS is the square of the length of the second fundamental form ofM, ·2 denotes theL 2-norm onM. In this paper, we generalize Hsu's result to any compact surfaces inS 3 with constant mean curvature.Supported by NSFH.  相似文献   

12.
13.
In this paper we prove a general Bernstein theorem on the complete spacelike constant mean curvature hypersurfaces in Minkowski space. The result generalizes the previous result of Cao-Shen-Zhu (1998) and Xin (1991). The proof again uses the fact that the Gauss map of a constant mean curvature hypersurface is harmonic, which was proved by K. T. Milnor (1983), and the maximum principle of S. T. Yau (1975).

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14.
Barbosa, do Carmo and Eschenburg characterized the totally umbilical spheres as the only weakly stable compact constant mean curvature hypersurfaces in the Euclidean sphere . In this paper we prove that the weak index of any other compact constant mean curvature hypersurface in n+1 which is not totally umbilical and has constant scalar curvature is greater than or equal to , with equality if and only if is a constant mean curvature Clifford torus with radius .

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15.
Let Mn be an n-dimensional complete connected and oriented hypersurface in a hyperbolic space Hn+1(c) with non-zero constant mean curvature H and two distinct principal curvatures. In this paper, we show that (1) if the multiplicities of the two distinct principal curvatures are greater than 1,then Mn is isometric to the Riemannian product Sk(r)×Hn-k(-1/(r2 + ρ2)), where r > 0 and 1 < k < n - 1;(2)if H2 > -c and one of the two distinct principal curvatures is simple, then Mn is isometric to the Riemannian product Sn-1(r) × H1(-1/(r22)) or S1(r) × Hn-1(-1/(r22)),r > 0, if one of the following conditions is satisfied (i) S≤(n-1)t22+c2t-22 on Mn or (ii)S≥ (n-1)t21+c2t-21 on Mn or(iii)(n-1)t22+c2t-22≤ S≤(n-1)t21+c2t-21 on Mn, where t1 and t2 are the positive real roots of (1.5).  相似文献   

16.
In this work, we investigate the existence of parabolic graphs of constant mean curvature H in whose boundary is given a priori, under hypothesis relating H with the geometry of the domain and a condition on the boundary data that, by analogy with a similar problem for vertical graphs in , we denominated it by bounded slope condition.  相似文献   

17.
18.
局部对称黎曼流形中的超曲面   总被引:2,自引:0,他引:2  
研究了局部对称黎曼流形中具有常平均曲率超曲面的几何性质,得到了关于其第二基本形式模长平方的拼挤定理.  相似文献   

19.
In this paper we consider a compact oriented hypersurface M n with constant mean curvature H and two distinct principal curvatures λ and μ with multiplicities (n − m) and m, respectively, immersed in the unit sphere S n+1. Denote by the trace free part of the second fundamental form of M n , and Φ be the square of the length of . We obtain two integral formulas by using Φ and the polynomial . Assume that B H,m is the square of the positive root of P H,m (x) = 0. We show that if M n is a compact oriented hypersurface immersed in the sphere S n+1 with constant mean curvatures H having two distinct principal curvatures λ and μ then either or . In particular, M n is the hypersurface .   相似文献   

20.
In this paper we prove the existence of a constant mean curvature surface spanning two given convex curves in parallel planes of ℝ3 under hypotheses relating the distance between the planes, the curvature of the curves and the mean curvature. It is also proved that the surface is a radial graph over a unit sphere.This author was partially Supported by Fapergs. Mathematics Subject Classifications (2000): 53A10, 53C42, 35J60  相似文献   

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