首页> 外文会议>Marcel Grossmann Meeting on General Relativity >SIMULATION OF COSMOLOGICAL HORIZONS BY ULTRACOLD ATOMS IN OPTICAL LATTICES AND MULTI-JOSEPHSON-JUNCTION LOOPS
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SIMULATION OF COSMOLOGICAL HORIZONS BY ULTRACOLD ATOMS IN OPTICAL LATTICES AND MULTI-JOSEPHSON-JUNCTION LOOPS

机译:超薄原子在光学格子和多josephse-nunction循环中模拟宇宙理论

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Excessive formation of topological defects (monopoles, vortices, and domain walls) between the subregions separated by cosmological horizons is a long-standing problem in treatment of the phase transitions in the early Universe. An important hint at its resolution was given in the last decade by the multi-Josephson-junction loop (MJJL) experiment and the experiments with ultracold atoms in optical potentials, which revealed the specific thermal correlations between the phases of order parameter in the spatial subregions disconnected in the course of the phase transition. It is shown in the present report that inclusion of such correlations into the simplest FRW cosmological model considerably reduces the number of the defects formed and, thereby, shows a promising way to resolve the long-standing cosmological puzzle.
机译:在宇宙理关区分开的次区域之间过度形成拓扑缺陷(垄断,涡流和畴壁)是治疗早期宇宙中相转变的长期问题。在过去的十年中,多Josephse-Chinciple Loop(MJJL)实验和光学电位中的超级原子的实验给出了其分辨率的一个重要提示,这在空间子区域中揭示了订单参数的阶段之间的特定热相关性在相位过渡过程中断开连接。在本报告中示出,将这种相关性与最简单的FRW宇宙学模型一起纳入显着减少了形成的缺陷的数量,从而显示了解决长期宇宙学难题的有希望的方法。

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