Late time behaviors of the expanding universe in the IIB matrix model
arXiv:1208.0711 · doi:10.1007/JHEP10(2012)147
Abstract
Recently we have studied the Lorentzian version of the IIB matrix model as a nonperturbative formulation of superstring theory. By Monte Carlo simulation, we have shown that the notion of time ---as well as space---emerges dynamically from this model, and that we can uniquely extract the real-time dynamics, which turned out to be rather surprising: after some "critical time", the SO(9) rotational symmetry of the nine-dimensional space is spontaneously broken down to SO(3) and the three-dimensional space starts to expand rapidly. In this paper, we study the same model based on the classical equations of motion, which are expected to be valid at later times. After providing a general prescription to solve the equations, we examine a class of solutions, which correspond to manifestly commutative space. In particular, we find a solution with an expanding behavior that naturally solves the cosmological constant problem.
25 pages, 3 figures
References in corpus (5)
- Cosmological solutions of emergent noncommutative gravity
- Matrix String Description of Cosmic Singularities in a Class of Time-dependent Solutions
- Higher Order Terms of Improved Mean Field Approximation for IIB Matrix Model and Emergence of Four-dimensional Space-time
- Toward the End of Time
- Quantum gravity equation in large N Yang-Mills quantum mechanics
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