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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Black hole quantization, thermodynamics and cosmological constant
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Black hole quantization, thermodynamics and cosmological constant

机译:黑洞量化,热力学和宇宙常数

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摘要

Bekenstein argues that the horizon area of a black hole has a constant distance spectrum. We investigate the effects of such a discrete spectrum on the thermodynamics of a Schwarzchild black hole (SBH) and a Schwarzchild-de Sitter black hole (SdBH), in terms of the time-energy uncertainty relation and Stefan-Boltzman law. For the massive SBH, a negative and logarithmic correction to the Bekenstein-Hawking. entropy is obtained, as well as other authors by using other methods. As to the minimal hole near the Planck scale, its entropy is no longer proportional to the horizon area, but is of order of the mass of the hole. This is similar to an excited stringy state. The vanishing heat capacity of such a minimal black hole implies that it may be a remnant as the ground state of the evaporating hole. The properties of a SdBH are similar to the SBH, except for an additional term of square area associated with the cosmological constant. In order to maintain the validity of the Bekenstein-Hawking formula, the cosmological constant is strongly limited by the size of the biggest black hole in the universe. A relation associated with the cosmological constant, Planck area and the Stefan-Boltzman constant is obtained. The cosmological constant is not only related to the vacuum energy, but is also related to the thermodynamics.
机译:贝肯斯坦认为,黑洞的视界区域具有恒定的距离谱。我们根据时间能量不确定性关系和Stefan-Boltzman定律研究了这样的离散光谱对Schwarzchild黑洞(SBH)和Schwarzchild-de Sitter黑洞(SdBH)的热力学的影响。对于大规模SBH,对Bekenstein-Hawking进行负对数校正。以及其他作者使用其他方法获得熵。至于普朗克尺度附近的最小孔,其熵不再与水平区域成正比,而是与孔质量成比例。这类似于兴奋的弦状状态。这种最小的黑洞的消失的热容量意味着它可能会像蒸发孔的基态一样残留。 SdBH的特性与SBH相似,除了与宇宙常数相关的平方面积的附加项外。为了保持Bekenstein-Hawking公式的有效性,宇宙常数受到宇宙中最大黑洞的大小的强烈限制。获得与宇宙常数,普朗克面积和斯特凡-玻尔兹曼常数相关的关系。宇宙常数不仅与真空能有关,而且与热力学有关。

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