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Black hole with a scalar field as a particle accelerator

机译:带标量场的黑洞作为粒子加速器

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We consider stationary axially symmetric black holes with the background scalar field and test particles that can interact with this field directly. Then, particle collision near a black hole can lead to the unbounded energy E-c.m. in the center of mass frame (contrary to some recent claims in literature). This happens always if one of the particles is neutral whereas another one has nonzero scalar charge. Kinematically, two cases occur here. (i) A neutral particle approaches the horizon with the speed of light while the velocity of the charged one remains separated from it (this is direct analogue of the situation with collision of geodesic particles.). (ii) Both particles approach the horizon with the speed almost equal to that of light but with different rates. As a result, in both cases the relative velocity also approaches the speed of light, so that E-c.m. becomes unbounded. We consider also a case when the metric coefficient g(phi phi) -> 0 near a black hole. Then, overlap between the geometric factor and the presence of the scalar field opens additional scenarios in which unbounded energy E-c.m. is possible as well. We give a full list of possible scenarios of high-energy collisions for the situations considered.
机译:我们考虑静止轴对称的黑洞,与背景标量字段和可以直接与该字段交互的测试粒子。然后,黑洞附近的颗粒碰撞可以导致无限的能量E-C.在质量框架的中心(与近期文献中的一些索赔相反)。如果其中一个颗粒是中性的,则会发生这种情况,而另一个颗粒具有非零标量电荷。运动学上,在这里发生两种情况。 (i)中性粒子以光速接近地平线,而带电的速度保持与其分离(这是大量测量颗粒的情况的直接类似物。)。 (ii)两种粒子接近地平线,速度几乎等于光的速度,但具有不同的速率。结果,在这两种情况下,相对速度也接近光速,使得E-C.变得无限制。我们还考虑了一个案例当在黑洞附近的公制系数g(phi phi) - > 0。然后,在几何因子和标量字段之间的存在之间重叠地打开额外的场景,其中无限的能量E-C.。也是可能的。我们为所考虑的情况提供了高能量碰撞的可能场景。

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