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The type IIB matrix model, also known as the IKKT model, has been proposed as a promising candidate for a non-perturbative formulation of superstring theory. Based on this proposal, various attempts have been made to explain how our…

The Lorentzian type IIB matrix model is a promising candidate for a nonperturbative formulation of superstring theory. In this model, the eigenvalue distribution of the $N\times N$ bosonic matrices $A_\mu$ $(\mu = 0 , \ldots , 9)$…

In this review article, we first discuss a possible regularization of the big bang curvature singularity of the standard Friedmann cosmology, where the curvature singularity is replaced by a spacetime defect. We then consider the hypothesis…

High Energy Physics - Theory · Physics 2021-07-26 F. R. Klinkhamer

The Lorentzian type IIB matrix model is a promising candidate for a nonperturbative formulation of superstring theory. Recently we performed complex Langevin simulations by adding a Lorentz invariant mass term as an IR regulator and found a…

The type IIB matrix model has been proposed as a non-perturbative definition of superstring theory since 1996. We study a simplified model that describes the late time behavior of the type IIB matrix model non-perturbatively using Monte…

The emergence of (3+1)-dimensional expanding space-time in the Lorentzian type IIB matrix model is an intriguing phenomenon which was observed in Monte Carlo studies of this model. In particular, this may be taken as a support to the…

High Energy Physics - Theory · Physics 2019-10-17 Toshihiro Aoki , Mitsuaki Hirasawa , Yuta Ito , Jun Nishimura , Asato Tsuchiya

The bosonic IIB matrix model is studied using a numerical method. This model contains the bosonic part of the IIB matrix model conjectured to be a non-perturbative definition of the type IIB superstring theory. The large N scaling behavior…

High Energy Physics - Theory · Physics 2009-10-31 S. Horata , H. S. Egawa

The Lorentzian type IIB matrix model is a promising candidate for a non-perturbative formulation of superstring theory. In previous studies, Monte Carlo calculations provided interesting results indicating the spontaneous breaking of SO(9)…

The IKKT or IIB matrix model has been postulated to be a non perturbative definition of superstring theory. It has the attractive feature that spacetime is dynamically generated, which makes possible the scenario of dynamical…

High Energy Physics - Lattice · Physics 2012-11-08 Konstantinos N. Anagnostopoulos , Takehiro Azuma , Jun Nishimura

Starting with topological field theory, we derive space-time uncertainty relation proposed by Yoneya through breakdown of topological symmetry in the large $N$ matrix model. Next, on the basis of only two basic principles, those are,…

High Energy Physics - Theory · Physics 2009-10-30 Ichiro Oda

The IIB matrix model proposes a mechanism for dynamically generating four dimensional space--time in string theory by spontaneous breaking of the ten dimensional rotational symmetry $\textrm{SO}(10)$. Calculations using the Gaussian…

High Energy Physics - Lattice · Physics 2015-03-17 Konstantinos N. Anagnostopoulos , Takehiro Azuma , Jun Nishimura

The bosonic IIB matrix model, which contains the bosonic part of the IIB matrix model conjectured to be a non-perturbative definition of the type IIB superstring theory, is studied using a numerical method. The large N scaling behavior of…

High Energy Physics - Lattice · Physics 2009-10-31 S. Horata , H. S. Egawa

For the purpose of analyzing non-perturbative dynamics of string theory, Nishimura and Sugino have applied an improved mean field approximation (IMFA) to IIB matrix model. We have extracted the essence of the IMFA and obtained a general…

High Energy Physics - Theory · Physics 2008-11-26 H. Kawai , S. Kawamoto , T. Kuroki , T. Matsuo , S. Shinohara

The type IIB matrix model is one of the most promising candidates for a nonperturbative formulation of superstring theory. In particular, its Lorentzian version was shown to exhibit an interesting real-time dynamics such as the spontaneous…

High Energy Physics - Theory · Physics 2017-04-26 Yuta Ito , Jun Nishimura , Asato Tsuchiya

We study the spontaneous breakdown of SO(10) symmetry in the IIB matrix model, a conjectured nonperturbative definition of type IIB superstring theory in ten dimensions. Our analysis is based on a Gaussian expansion technique, which was…

High Energy Physics - Theory · Physics 2009-11-07 Jun Nishimura , Fumihiko Sugino

The matrix models are non-perturbative formulations of string theory, from which many believe that spacetime arises. The matrix fluctuations around the spacetime thus created should represent both matter and gravitational fields. In this…

High Energy Physics - Theory · Physics 2025-09-24 Pei-Ming Ho , Hikaru Kawai , Harold C. Steinacker

We study the Lorentzian version of the type IIB matrix model as a nonperturbative formulation of superstring theory in (9+1)-dimensions. Monte Carlo results show that not only space but also time emerges dynamically in this model.…

High Energy Physics - Theory · Physics 2015-06-11 Jun Nishimura

The type IIB matrix model is conjectured to be a nonperturbative definition of type IIB superstring theory. In this model, spacetime is a dynamical quantity and compactification of extra dimensions can be realized via spontaneous symmetry…

High Energy Physics - Theory · Physics 2019-06-06 Konstantinos N. Anagnostopoulos , Takehiro Azuma , Yuta Ito , Jun Nishimura , Stratos Kovalkov Papadoudis

The large-N reduced models have been proposed as the nonperturbative formulation of the superstring theory. One of the most promising candidates is the IIB matrix model. While there have been a lot of interesting discoveries of the IIB…

High Energy Physics - Theory · Physics 2007-05-23 Takehiro Azuma

In string or M theories, the spontaneous breaking of 10D or 11D Lorentz symmetry is required to describe our space-time. A direct approach to this issue is provided by the IIB matrix model. We study its 4D version, which corresponds to the…

High Energy Physics - Theory · Physics 2009-11-07 J. Ambjorn , K. N. Anagnostopoulos , W. Bietenholz , F. Hofheinz , J. Nishimura