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Vacuum Energy Density Fluctuations in Minkowski and Casimir States via Smeared Quantum Fields and Point Separation

机译:通过弥散量子场和点分离在Minkowski和Casimir态中的真空能密度涨落

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摘要

We present calculations of the variance of fluctuations and of the mean of the energy momentum tensor of a massless scalar field for the Minkowski and Casimir vacua as a function of an intrinsic scale defined by a smeared field or by point separation. We point out that contrary to prior claims, the ratio of variance to mean-squared being of the order unity is not necessarily a good criterion for measuring the invalidity of semiclassical gravity. For the Casimir topology we obtain expressions for the variance to mean-squared ratio as a function of the intrinsic scale (defined by a smeared field) compared to the extrinsic scale (defined by the separation of the plates, or the periodicity of space). Our results make it possible to identify the spatial extent where negative energy density prevails which could be useful for studying quantum field effects in worm holes and baby universe, and for examining the design feasibility of real-life `time-machines'. For the Minkowski vacuum we find that the ratio of the variance to the mean-squared, calculated from the coincidence limit, is identical to the value of the Casimir case at the same limit for spatial point separation while identical to the value of a hot flat space result with a temporal point-separation. We analyze the origin of divergences in the fluctuations of the energy density and discuss choices in formulating a procedure for their removal, thus raising new questions into the uniqueness and even the very meaning of regularization of the energy momentum tensor for quantum fields in curved or even flat spacetimes when spacetime is viewed as having an extended structure.
机译:我们给出了Minkowski和Casimir vacua的无质量标量场的波动方差和能量动量张量平均值的计算,该函数是由拖影场或点分离定义的固有尺度的函数。我们指出,与先前的权利要求相反,方差与均方之比为1阶并不一定是衡量半经典重力无效性的良好标准。对于卡西米尔拓扑,我们获得了与内在尺度(由拖尾场定义)相比于外在尺度(由板的分离或空间的周期性定义)的函数,均方差与均方比的表达式。我们的结果使得有可能确定负能量密度占主导的空间范围,这对于研究蠕虫洞和婴儿宇宙中的量子场效应以及检查现实生活中“时间机器”的设计可行性是有用的。对于Minkowski真空,我们发现,从重合极限计算出的方差与均方之比,在相同的空间点分离极限下,与Casimir情况的值相同,而与热平板的值相同具有时间点分隔的空间结果。我们分析了能量密度波动中的发散根源,并讨论了消除它们的程序,从而提出了各种选择,从而提出了新的问题,即弯曲或什至量子场的能量动量张量正则化的唯一性和意义。时空被视为具有扩展结构时的固定时空。

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  • 作者

    Phillips, N G; Hu, B L;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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