共查询到19条相似文献,搜索用时 62 毫秒
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分析了在相对论体系中狭义相对性原理和宇宙学原理之间的关系以及Beltrami-de Sitter -陆启铿疑难.指出可以把狭义相对性原理推广到非零常曲率时空,在具有Beltrami度规 的de Sitter/反de Sitter时空中建立狭义相对论的运动学和粒子动力学. 在这类狭义相对 论中,相对于Beltrami坐标同时性,Beltrami坐标系就是惯性坐标系,相应的观测者为惯 性观测者; 对于自由粒子和光讯号, 惯性定律成立;可以定义可观测量,它们不但守恒而且还 满足推广的爱因斯坦关系.除了Beltrami坐标时同时性之外,对于共动观测, 还可以取固 有时同时性;此时,Beltrami度规成为Robertson-Walker型的度规,其3维空间是闭的,对 于平坦的偏离为宇宙学常数的量级.这表明,在这类狭义相对论中,相对性原理与“完美”宇 宙学原理之间存在内在联系,并不存在那些问题.进而,基于最新观测事实,重述了Mach原 理;指出对于Beltrami-de Sitter/反de Sitter时空,宇宙学常数恰恰给出惯性运动的起 源.
关键词:
狭义相对性原理
宇宙学原理
de Sitter不变的狭义相对论
Beltrami-de Sitter时空
同时性
Mach原理 相似文献
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第五讲暗能量和德西特时空 总被引:1,自引:0,他引:1
最近的天文观测表明,宇宙是在加速膨胀,而不是原来认为的减速膨胀.为解释加速膨胀,必须在宇宙的物质能量中引入暗能量这一成分,文章讨论了暗能量的可能侯选者,特别强调了宇宙常数问题、德西特时空问题以及和德西特时空相关的一些基本问题. 相似文献
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A new method of researching fermion tunneling from the Vaidya——Bonner de Sitter black hole 下载免费PDF全文
Using the general tortoise coordinate transformation, we research
the fermion tunneling of the Vaidya--Bonner de Sitter black hole via
a semi-classical method and finally obtain the right surface gravity, Hawking
temperature and tunneling rate near the event horizon and cosmical
horizon. 相似文献
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We study the evolution of time-dependent fluctuations and particle production in an expanding dS and contracting AdS universe. Using the functional Schrödinger formalism we are able to probe the time-dependent regime which is out of the reach of the standard approximations like the Bogolyubov method. In both cases, the evolution of fluctuations is governed by the harmonic oscillator equation with time-dependent frequency. In the case of an expanding dS universe we explicitly show that the frequency of fluctuations produced at a certain moment diminish in time, while the distribution of the created particles quickly approaches the thermal radiation of the dS space. In the case of a contracting AdS universe we show that the frequency of fluctuations produced at a certain moment grow in time. Nominally, the temperature of radiation diverges as the Big Crunch is approaching, however, increasing oscillations of the spectrum make the temperature poorly defined, which is in agreement with the fact that AdS space does not have an event horizon which would cause thermal radiation. Unlimited growth of fluctuations indicates that an eventual tunneling into AdS vacuum would have catastrophic consequences for our universe. 相似文献
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The uncertainty principle restricts our ability to simultaneously predict the measurement outcomes of two incompatible observables of a quantum particle. However, this uncertainty could be reduced and quantified by a new Entropic Uncertainty Relation (EUR). By the open quantum system approach, we explore how the nature of de Sitter space affects the EUR. When the quantum memory A freely falls in the de Sitter space, we demonstrate that the entropic uncertainty acquires an increase resulting from a thermal bath with the Gibbons–Hawking temperature. And for the static case, we find that the temperature coming from both the intrinsic thermal nature of the de Sitter space and the Unruh effect associated with the proper acceleration of A also brings effect on entropic uncertainty, and the higher the temperature, the greater the uncertainty and the quicker the uncertainty reaches the maximal value. And finally the possible mechanism behind this phenomenon is also explored. 相似文献
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In the present paper, we solve the radial parts of Dirac equation between the inner and the outer horizon in the Schwarzschild-de
Sitter (SdS for short) geometry. Complete physical parameter space is divided into two regions depending on the height of
the potential barrier and the energy of the incoming particle. In each region, we concentrate on two limiting cases. The first
case is when the two horizons are close to each other and the second case is when the horizons are far apart. In each case,
we give the semi-analytical solution by using WKB (Wentzel-Krames-Brillouin) approximation and show the instantaneous reflection
and transmission coefficients as well as the radial wave functions graphically.
PACS: 04.20.-q, 04.70.-s, 04.70.Dy, 95.30.Sf 相似文献
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In this paper, Hawking radiation from the Kerr Newman de Sitter black hole is studied via gauge anomaly and gravitational anomaly. The obtained results of Hawking radiation from the event horizon and the cosmological horizon accord with those by other methods. 相似文献
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In this paper, an ADM mass formula for asymptotically de Sitter(dS) space-time is derived from the energy-momentum tensor. We take the vacuum dS space as the background and investigate the ADM mass of the (d + 3)-dimensional sphere-symmetric space with a positive cosmological constant, and find that the ADM mass of asymptotically dS space is based on the ADM mass of Schwarzschild field and the cosmological background brings some small mass contribution as well. 相似文献
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Xiao-Xiong Zeng Kai Lin Shu-Zheng Yang 《International Journal of Theoretical Physics》2008,47(10):2533-2542
Very recently, a conceptually clean and economical anomaly cancellation method, based on the initial work of Robinson and
Wilczek, on Hawking radiation was proposed. On the basis of this formalism, we investigate Hawking radiation from the higher
dimensional Schwarzschild de Sitter and Anti-de Sitter black holes. To describe the observable physics in de Sitter space,
we construct the effective field theory between the event horizon and cosmological horizon. Our result shows that when the
underlying diffeomorphism symmetries are saved at the quantum level, Hawking radiation, from not only the event horizon but
also the cosmological horizon in the higher dimensional space time, can be determined by the covariant compensating fluxes
of energy momentum tensor. Meanwhile, we also discuss the exact radiation spectrum by incorporating the self-gravitational
interaction and back reaction of the outgoing modes. 相似文献