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相关论文: Domain wall universe in the Einstein-Born-Infeld t…

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We investigate the spacetime of a thick gravitating domain wall for a general potential $V(\Phi)$. Using general analytical arguments we show that all nontrivial solutions fall into two categories: those interpretable as an isolated domain…

广义相对论与量子宇宙学 · 物理学 2009-10-31 Filipe Bonjour , Christos Charmousis , Ruth Gregory

The conservation law for the angular momentum in curved spacetime, consistent with relativistic quantum mechanics, requires that the antisymmetric part of the affine connection (torsion tensor) is a variable in the principle of least…

广义相对论与量子宇宙学 · 物理学 2026-05-28 Nikodem Popławski

In this paper, we focus upon the behaviour of spacetime of charged black holes described by Eddington-inspired Born-Infeld (EiBI) gravity. With a static and spherically symmetric metric, we solve the ensuing field equations obtained from…

广义相对论与量子宇宙学 · 物理学 2025-12-01 Muhammed Shafeeque , Malay K. Nandy

We study the nature of the inner Cauchy horizon of a Reissner-Nordstr\"om black hole in a quantum context by means of the horizon wave-function obtained from modelling the electrically charged source as a Gaussian wave-function. Our main…

广义相对论与量子宇宙学 · 物理学 2015-04-29 Roberto Casadio , Octavian Micu , Dejan Stojkovic

We argue that the main feature behind novel properties of higher-dimensional black holes, compared to four-dimensional ones, is that their horizons can have two characteristic lengths of very different size. We develop a long-distance…

高能物理 - 理论 · 物理学 2014-11-18 Roberto Emparan , Troels Harmark , Vasilis Niarchos , Niels A. Obers

The vacuum, static, and spherically symmetric solutions in the mimetic Born-Infeld gravity are studied. The mimetic Born-Infeld gravity is a reformulation of the Eddington-inspired-Born-Infeld (EiBI) model under the mimetic approach. Due to…

广义相对论与量子宇宙学 · 物理学 2018-01-26 Che-Yu Chen , Mariam Bouhmadi-López , Pisin Chen

We construct static and spherically symmetric particle-like and black hole solutions with magnetic and/or electric charge in the Einstein-Born-Infeld-dilaton-axion system, which is a generalization of the Einstein-Maxwell-dilaton-axion…

广义相对论与量子宇宙学 · 物理学 2010-11-19 Takashi Tamaki , Takashi Torii

Physical arguments related with the existence of black hole solutions having a non trapping interior are discussed. Massive scalar fields interacting with gravity are considered. Interior asymptotic solutions showing a scalar field…

广义相对论与量子宇宙学 · 物理学 2009-10-30 Alejandro Cabo , Eloy Ayon

The recently proposed effective equation of motion for the $4D$- Einstein-Gauss-Bonnet gravity admits a static black hole solution that has, like the Rissner-Nordstr\"{o}m charged black hole, two horizons instead of one for the…

广义相对论与量子宇宙学 · 物理学 2020-09-14 Naresh Dadhich

We study the domain walls which form when Bose condensates acquire a double-well dispersion. Experiments have observed such domain walls in condensates driven across a $\mathbb{Z}_2$ symmetry-breaking phase transition in a shaken optical…

量子气体 · 物理学 2017-01-04 Tongtong Liu , Logan W. Clark , Cheng Chin

We consider a universe formed in a black hole in the Einstein--Cartan theory of gravity. The interior of a Schwarzschild black hole can be represented by the Kantowski--Sachs metric that describes a closed anisotropic universe. We use this…

广义相对论与量子宇宙学 · 物理学 2021-02-19 Nikodem Popławski

In a braneworld description of our universe, we must allow for the possibility of having dynamical branes around the time of the big bang. Some properties of such domain walls in motion are discussed here, for example the ability of…

高能物理 - 理论 · 物理学 2011-03-10 Jean-Luc Lehners

We consider the Einstein-Gauss-Bonnet equations in five dimensions including a negative cosmological constant and a Maxwell field. Using an appropriate Ansatz for the metric and for the electromagnetic fields, we construct numerically black…

广义相对论与量子宇宙学 · 物理学 2011-12-01 Y. Brihaye

We construct and investigate the dynamical black hole spacetime embedded in the expanding universe filled with cosmic fluid, such as dark energy. When the equation of state (EoS) parameter of the fluid is a constant, we find exact solutions…

广义相对论与量子宇宙学 · 物理学 2025-09-24 Shin'ichi Nojiri , Sergei D. Odintsov

We study Einstein-Gauss-Bonnet gravity coupled to a bumblebee field which leads to a spontaneous Lorentz symmetry breaking in the gravitational sector. We obtain an exact black hole solution and a cosmological solution in four dimensional…

广义相对论与量子宇宙学 · 物理学 2022-02-03 Chikun Ding , Xiongwen Chen , Xiangyun Fu

In this paper, we studied Einsteinian quartic gravity minimally coupled to electrodynamics in four dimensions. First, by variation action, we obtain the field equations, and by integration, we obtain a nonlinear third-order differential…

广义相对论与量子宇宙学 · 物理学 2022-11-30 S. N. Sajadi , Leila Shahkarami , Farid Charmchi , S. H. Hendi

In this paper we explore the idea that black holes can persist in a universe that collapses to a big crunch and then bounces into a new phase of expansion. We use a scalar field to model the matter content of such a universe {near the time}…

广义相对论与量子宇宙学 · 物理学 2017-06-28 Timothy Clifton , Bernard Carr , Alan Coley

We consider a class of domain-wall black hole solutions in the dilaton gravity with a Liouville-type dilaton potential. Using the surface counterterm approach we calculate the stress-energy tensor of quantum field theory (QFT) corresponding…

高能物理 - 理论 · 物理学 2008-11-26 Rong-Gen Cai , Yuan-Zhong Zhang

Non-extreme walls (bubbles with two insides) and ultra-extreme walls (bubbles of false vacuum decay) are discussed. Their respective energy densities are higher and lower than that of the corresponding extreme (supersymmetric), planar…

高能物理 - 理论 · 物理学 2009-09-17 Mirjam Cvetič , Stephen Griffies , Harald H. Soleng

In the Einstein-Cartan-Sciama-Kibble theory of gravity, the intrinsic spin of fermionic matter generates spacetime torsion and induces gravitational repulsion at extremely high densities. This repulsion prevents the collapsing spin-fluid…

广义相对论与量子宇宙学 · 物理学 2011-08-09 Nikodem J. Poplawski