论文标题

一般相对论中旋转类似梅尔文的宇宙和虫洞

Rotating Melvin-like universes and wormholes in general relativity

论文作者

Bronnikov, K. A., Krechet, V. G., Oshurko, V. B.

论文摘要

我们找到了爱因斯坦 - 马克斯韦尔方程的精确解决方案的家族,用于旋转完美流体的圆柱对称分布,并具有状态方程$ p =wρ$($ | w | <1 $),并在角度方向携带圆形电流。该电流沿$ z $轴创建一个磁场。一些解决方案描述了类似于梅尔文的静态磁性宇宙的几何形状,并包含常规的对称轴,而其他一些(在情况下,$ w> 0 $)描述了不包含对称轴的可遍布的虫洞几何形状。与Melvin的解决方案不同,具有旋转和磁场的溶液不能真空并需要电流。虫洞的溶液接收与喉咙两侧的扁平空间区域相匹配,从而形成了可能可见的圆柱形虫洞构型,对于位于空间的平坦或弱弯曲部分的远处观察者而言。薄外壳位于内部(虫洞)和外部(平坦)区域之间的连接处,由在模型的自由参数的适当选择下满足弱能量条件的物质,因此我们获得了一般相对性中无幻影虫洞模型的新示例。在极限$ w \至1 $中,磁场趋于零,并且虫洞模型趋向于先前获得的磁场,其中重力源是僵硬的物质,其方程式$ p =ρ$。

We find a family of exact solutions to the Einstein-Maxwell equations for rotating cylindrically symmetric distributions of a perfect fluid with the equation of state $p = wρ$ ($|w| < 1$), carrying a circular electric current in the angular direction. This current creates a magnetic field along the $z$ axis. Some of the solutions describe geometries resembling that of Melvin's static magnetic universe and contain a regular symmetry axis, while some others (in the case $w > 0$) describe traversable wormhole geometries which do not contain a symmetry axis. Unlike Melvin's solution, those with rotation and a magnetic field cannot be vacuum and require a current. The wormhole solutions admit matching with flat-space regions on both sides of the throat, thus forming a cylindrical wormhole configuration potentially visible for distant observers residing in flat or weakly curved parts of space. The thin shells, located at junctions between the inner (wormhole) and outer (flat) regions, consist of matter satisfying the Weak Energy Condition under a proper choice of the free parameters of the model, and thus we obtain new examples of phantom-free wormhole models in general relativity. In the limit $w \to 1$, the magnetic field tends to zero, and the wormhole model tends to the one obtained previously, where the source of gravity is stiff matter with the equation of state $p = ρ$.

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