论文标题

在非交通性几何形状下的薄壳虫洞启发了爱因斯坦 - 加斯 - 鲍尼斯重力

Thin-shell wormhole under non-commutative geometry inspired Einstein-Gauss-Bonnet gravity

论文作者

Rahman, N., Kalam, M., Das, A., Islam, S., Rahaman, F., Murshid, M.

论文摘要

爱因斯坦 - 加斯 - 尼特重力是对较高维度的一般相对性的概括,其中一阶和二阶术语分别对应于一般相对论和爱因斯坦 - 高斯 - 骨网络重力。我们通过“剪切式”技术构建了新的五维(5D)薄壳虫洞,该技术是从爱因斯坦 - 加斯 - 加斯 - 邦纳特重力中的黑洞中构建的,其灵感来自非交通性几何形状,从静态的球形对称性,高斯高斯质量分布和这种结构形式的构造形式开始,我们已经浏览了多个壳的特征。状态方程,虫洞的性质,外壳的外来物质含量的总量。我们还分析了构造的虫洞的线性稳定性。从我们的研究中,我们可以断言,参考文献中可用的其他薄壳虫洞模型,我们的模型是合理的。

Einstein-Gauss-Bonnet gravity is a generalization of the general relativity to higher dimensions in which the first and second-order terms correspond to general relativity and Einstein-Gauss-Bonnet gravity respectively. We construct a new class of five-dimensional (5D) thin-shell wormholes by the `Cut-Paste' technique from black holes in Einstein-Gauss-Bonnet gravity inspired by non-commutative geometry starting with a static spherically symmetric, Gaussian mass distribution as a source and for this structural form of the thin shell wormhole we have explored several salient features of the solution, viz., pressure-density profile, equation of state, the nature of wormhole, total amount of exotic matter content at the shell. We have also analyzed the linearized stability of the constructed wormhole. From our study we can assert that our model is found to be plausible with reference to the other model of thin-shell wormhole available in literature.

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