M(atrix) theory: matrix quantum mechanics as a fundamental theory
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- 8 June 2001
- journal article
- research article
- Published by American Physical Society (APS) in Reviews of Modern Physics
- Vol. 73 (2) , 419-461
- https://doi.org/10.1103/revmodphys.73.419
Abstract
This article reviews the matrix model of M theory. M theory is an 11-dimensional quantum theory of gravity that is believed to underlie all superstring theories. M theory is currently the most plausible candidate for a theory of fundamental physics which reconciles gravity and quantum field theory in a realistic fashion. Evidence for M theory is still only circumstantial—no complete background-independent formulation of the theory exists as yet. Matrix theory was first developed as a regularized theory of a supersymmetric quantum membrane. More recently, it has appeared in a different guise as the discrete light-cone quantization of M theory in flat space. These two approaches to matrix theory are described in detail and compared. It is shown that matrix theory is a well-defined quantum theory that reduces to a supersymmetric theory of gravity at low energies. Although its fundamental degrees of freedom are essentially pointlike, higher-dimensional fluctuating objects (branes) arise through the non-Abelian structure of the matrix degrees of freedom. The problem of formulating matrix theory in a general space-time background is discussed, and the connections between matrix theory and other related models are reviewed.Keywords
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This publication has 262 references indexed in Scilit:
- Matrix string partition functionsPhysics Letters B, 1998
- Three-graviton scattering in Matrix theory revisitedPhysics Letters B, 1998
- Finite Yang-Mills integralsPhysics Letters B, 1998
- Matrix string theory, 2D SYM instantons and affine Toda systemsPhysics Letters B, 1998
- Matrix description of M-theory on T6Physics Letters B, 1998
- On the string interpretation of M(atrix) theoryPhysics Letters B, 1997
- Instantons, scale invariance and Lorentz invariance in matrix theoryPhysics Letters B, 1997
- Rotational invariance in the M(atrix) formulation of type IIB theoryPhysics Letters B, 1997
- On gauge bosons in the matrix model approach to M theoryPhysics Letters B, 1997
- Open p-branesPhysics Letters B, 1996