$mathbb的一些子群{F}_q^*$和mathbb中$x^{2^nd}-1的显式因子{F}_q[x]$

IF 0.6 Q3 MATHEMATICS Transactions on Combinatorics Pub Date : 2019-11-10 DOI:10.22108/TOC.2019.114742.1612
Manjit Singh
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引用次数: 0

摘要

让$mathcal{S}_q$表示乘法群$mathbb中所有平方元素的群{F}_q^*有限域$mathbb的${F}_q包含$q$元素的奇特征的$‎. ‎让$mathcal{O}_q$是$mathbb的所有奇数阶元素的集合{F}_q^*$‎. ‎然后$mathcal{O}_q$作为$mathcal的子群出现{S}_q$‎. ‎在本文中‎, ‎我们展示$mathcal{O}_q=langle4rangle$如果$q=2t+1$并且‎, ‎$数学的{O}_q=langle trangle$如果$q=4t+1$‎, ‎其中$q$和$t$是奇数素数‎. ‎进一步的‎, ‎我们使用$mathbb的这些特殊子群的生成元来确定$x^{2^nt}-1$的不可约因子的系数{F}_q^*$
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Some subgroups of $mathbb{F}_q^*$ and explicit factors of $x^{2^nd}-1 in mathbb{F}_q[x]$
Let $mathcal{S}_q$ denote the group of all square elements in the multiplicative group $mathbb{F}_q^*$ of a finite field $mathbb{F}_q$ of odd characteristic containing $q$ elements‎. ‎Let $mathcal{O}_q$ be the set of all odd order elements of $mathbb{F}_q^*$‎. ‎Then $mathcal{O}_q$ turns up as a subgroup of $mathcal{S}_q$‎. ‎In this paper‎, ‎we show that $mathcal{O}_q=langle4rangle$ if $q=2t+1$ and‎, ‎$mathcal{O}_q=langle trangle $ if $q=4t+1$‎, ‎where $q$ and $t$ are odd primes‎. ‎Further‎, ‎we determine the coefficients of irreducible factors of $x^{2^nt}-1$ using generators of these special subgroups of $mathbb{F}_q^*$
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
2
审稿时长
30 weeks
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