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1.
设${\mathbb F}$是特征为零的代数闭域, $H$为非点化非幺模的8维非半单Hopf代数, $M_{2}({\mathbb F})$为${\mathbb F}$上二阶方阵组成的全矩阵代数. 本文的主要目的是讨论和分类$M_{2}({\mathbb F})$上所有的$H$-模代数结构.  相似文献   

2.
本文研究了有限维广义Witt李超代数W的二阶上同调群H2(W,F),其中F是一个特征P>2的代数封闭域.通过计算W到W*的导子,得到H2(W,F)是平凡的.应用此结果,我们可得W的中心扩张是平凡的.  相似文献   

3.
谢文娟  魏竹 《数学杂志》2016,36(1):77-86
本文研究了特征为素数p>2的有限维Special李超代数S(m,n;t)的中心扩张.通过计算从S(m,n;t)到S(m,n;t)*的斜外导子,得到二阶上同调群H2(S(m,n;t),F)是平凡的.应用此结果,可得S(m,n;t)的中心扩张是平凡的.  相似文献   

4.
研究了系数在模李超代数W(m,3,1)上的gl(2,F)的一维上同调,其中F是一个素特征的代数闭域且gl(2,F)是系数在F上的2×2阶矩阵李代数.计算出所有gl(2,F)到模李超代数W(m,3,1)的子模的导子和内导子.从而一维上同调H~1(gl(2,F),W(m,3,1))可以完全用矩阵的形式表示.  相似文献   

5.
研究$p$-\!\!特征标高度等于$2$的$W(2,\boldsymbol{n})$和$H(2,\boldsymbol{n})$ 的不可约表示, 给出了当 $p$-\!\!特征标$\chi $的 高度等于$2$时, $L=X(2,\boldsymbol{n})$, $X=W,H$ 的不可约$L$-\!\!模 同构类代表元集合.  相似文献   

6.
在特征P3的域上,首先对李超代数sl_(2/1)的一类Kac模进行权空间分解,然后计算sl_(2/1)到其Kac模的权导子,进而决定了sl_(2/1)到该Kac模的一次上同调.  相似文献   

7.
本文总设$F$是$p>2$的域,我们在域$F$上构造了有限维模李超代数$W(m,n,l,\underline{t})$, 定义了$W(m,n,l,\underline{t})$的$\Theta$-型导子,进而确定了它导子超代数.  相似文献   

8.
将李超代数的导子和Hom-结构表示为矩阵,通过计算,具体刻画了特征零的代数闭域上Filiform李超代数Ln,m 的导子代数和保积Hom-结构。  相似文献   

9.
Witt超代数在伴随表示的意义下是一般线性李超代数gl_(2|1-)模.通过对Witt超代数进行子模分解和权空间分解,用简约的方法计算了gl_(2|1-)模.通过对Witt超代数进行子模分解和权空间分解,用简约的方法计算了gl_(2|1-)到Witt超代数的低维上同调.  相似文献   

10.
本文主要研究了特征 $p>3$ 的域上的有限维奇 $Hamiltonian$ 李超代数 $HO$ 的偶部到广义 $Witt$李超代数 $W$ 的奇部的负$\mathbb{Z}$-齐次导子. 我们利用 $\mathcal{HO}$ 的生成元集, 通过计算导子在其生成元集上的作用的方法, 首先计算了$\mathbb{Z}$-次数为 $-1$ 的导子, 然后决定了 $\mathbb{Z}$-次数小于 $-1$ 的导子.  相似文献   

11.
Let F be the underlying base field of characteristic p > 3 and denote by M the even part of the finite-dimensional simple modular Lie superalgebra M. In this paper, the generator sets of the Lie algebra M which will be heavily used to consider the derivation algebra Der(M) are given. Furthermore, the derivation algebra of M is determined by reducing derivations and a torus of M, i.e.,As a result, the derivation algebra of the even part of M does not equal the even part of the derivation superalgebra of M.  相似文献   

12.
In this paper F always denotes a field of characteristic P>2.We construct the finitedimensional modular Lie superalgebra W(m,n,l,(t))over a field F,define θ-type derivation and determine the derivation superalgebra of w(m,n,l,(t)).  相似文献   

13.
通过计算,得到了广义扭Schr\"{o}dinger-Virasoro李代数的导子代数和2-上同调群.  相似文献   

14.
戴先胜  范广哲 《数学学报》2017,60(2):335-342
研究了经典N=2李共形超代数的导子和第二上同调群的结构,并应用第二上同调群的结果确定了该李共形超代数的泛中心扩张.  相似文献   

15.
On quadratic hypersurfaces in $\mathbb {H}^2$, we find the explicit forms of tangential Cauchy‐Fueter operators and associated tangential Laplacians □b. Then by using the Fourier transformation on the associated nilpotent Lie groups of step two, we construct the relative fundamental solutions to the tangential Laplacians and Szegö kernels on the nondegenerate quadratic hypersurfaces. It is different from the complex case that the quaternionic tangential structures on the nondegenerate quadratic hypersurfaces in $\mathbb {H}^2$ cannot be reduced to one standard model and the non‐homogeneous tangential Cauchy‐Fueter equations are solvable even in many convex cases.  相似文献   

16.
17.
Motivated by applications in financial mathematics, Ref. 3 showed that, although fails to be locally convex, an analogue to the classical bipolar theorem can be obtained for subsets of : if we place this space in polarity with itself, the bipolar of a set of non-negative random variables is equal to its closed (in probability), solid, convex hull. This result was extended by Ref. 1 in the multidimensional case, replacing by a closed convex cone K of [0, )d, and by Ref. 12 who provided a conditional version in the unidimensional case. In this paper, we show that the conditional bipolar theorem of Ref. 12 can be extended to the multidimensional case. Using a decomposition result obtained in Ref. 3 and Ref. 1, we also remove the boundedness assumption of Ref. 12 in the one dimensional case and provide less restrictive assumptions in the multidimensional case. These assumptions are completely removed in the case of polyhedral cones K.  相似文献   

18.
This paper investigates the number of trace-one elements in a polynomial basis for . A polynomial basis with a small number of trace-one elements is desirable because it results in an efficient and low cost implementation of the trace function. We focus on the case where the reduction polynomial is a trinomial or a pentanomial, in which case field multiplication can also be efficiently implemented. Communicated by: P. Wild  相似文献   

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