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Stability and instability of Ellis and phantom wormholes: Are there ghosts?

机译:Ellis和Phantom虫洞的稳定性和不稳定性:有鬼吗?

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摘要

It is concluded in the literature that the Ellis wormhole is unstable under small perturbations and would either decay to the Schwarzschild black hole or expand away to infinity. While this deterministic conclusion of instability is correct, we show that the Ellis wormhole reduces to the Schwarzschild black hole only when the Ellis solution parameter. assumes a complex value -i. We shall then reexamine the stability of Ellis and phantom wormholes from the viewpoint of local and asymptotic observers by using a completely different approach, viz., we adapt Tangherlini's nondeterministic, prequantal statistical simulation about photon motion in the real optical medium to an effective medium reformulation of motions obtained via Hamilton's optical-mechanical analogy in a gravity field. A crucial component of Tangherlini's idea is the observed increase of momentum of the photons entering a real medium. We show that this fact has a heuristic parallel in the effective medium version of the Pound-Rebka experiment in gravity. Our conclusion is that there is a nonzero probability that Ellis and phantom wormholes could appear stable or unstable depending on the location of observers and on the values of., leading to the possibility of ghost wormholes (like ghost stars). The Schwarzschild horizon, however, would always certainly appear to be stable (R = 1, T = 0) to observers regardless of their location. Phantom wormholes of bounded mass in the extreme limit a -> -1 are also shown to be stable just as the Schwarzschild black hole is. We shall propose a thought experiment showing that our nondeterministic results could be numerically translated into observable deterministic signatures of ghost wormholes.
机译:它在文献中得出结论,埃利斯虫洞在小扰动下不稳定,要么腐烂到Schwarzschild黑洞或扩展到无穷大。虽然这种确定性结论不稳定是正确的,但我们表明Ellis虫洞才能在Ellis解决方案参数时减少到Schwarzschild黑洞。假设一个复杂的值-i。然后,我们将通过使用完全不同的方法来重新审视Ellis和Phantom蠕虫孔的稳定性,使用完全不同的方法Viz,我们调整Tangherlini的非确定性,预先定义统计模拟,关于真实光学介质中的光子运动到有效介质重构通过汉密尔顿的光学机械类比在重力场中获得的运动。 Tangherlini思想的一个关键组成部分是观察到进入真实介质的光子的动量增加。我们表明,这一事实在重力的重力中的有效媒介版本中具有启发式平行。我们的结论是,埃利斯和幻象洞可能看起来稳定或不稳定,这取决于观察者的位置和鬼魂的价值观,导致鬼魂虫洞(如鬼魂)的可能性。然而,Schwarzschild Horizo​​ n始终似乎似乎是稳定的(r = 1,t = 0)到观察者,无论其位置如何。极限内极限A - > -1的界限质量的幻影漏洞也被视为稳定,就像Schwarzschild黑洞一样稳定。我们将提出一个思想实验,表明我们的非确定结果可以在数值上翻译成鬼魂虫洞的可观察确定性签名。

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  • 来源
    《Physical review, D》 |2016年第10期|共18页
  • 作者单位

    Univ N Bengal Dept Math Siliguri 734013 W Bengal India;

    Bashkir State Univ Dept Phys &

    Astron Sterlitamak Campus Sterlitamak 453103 Republic Of Bas Russia;

    M Akmullah Bashkir State Pedag Univ Zeldovich Int Ctr Astrophys Ufa 450000 Republic Of Bas Russia;

    Darjeeling Govt Coll Dept Math Richmond Hill Darjeeling 734104 W Bengal India;

    Univ Puget Sound Program Sci Technol &

    Soc 1500 North Warner St Tacoma WA 98416 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

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