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  On the Integrability of large N Plane-Wave Matrix Theory

Klose, T., & Plefka, J. (2004). On the Integrability of large N Plane-Wave Matrix Theory. Nuclear Physics B, 679(1-2), 127-142.

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Klose, Thomas1, Author
Plefka, Jan1, Author
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1Quantum Gravity & Unified Theories, AEI-Golm, MPI for Gravitational Physics, Max Planck Society, ou_24014              

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 Abstract: We show the three-loop integrability of large N plane-wave matrix theory in a subsector of states comprised of two complex light scalar fields. This is done by diagonalizing the theory's Hamiltonian in perturbation theory and taking the large N limit. At one-loop level the result is known to be equal to the Heisenberg spin-1/2 chain, which is a well-known integrable system. Here, integrability implies the existence of hidden conserved charges and results in a degeneracy of parity pairs in the spectrum. In order to confirm integrability at higher loops, we show that this degeneracy is not lifted and that (corrected) conserved charges exist. Plane-wave matrix theory is intricately connected to N=4 Super Yang-Mills, as it arises as a consistent reduction of the gauge theory on a three-sphere. We find that after appropriately renormalizing the mass parameter of the plane-wave matrix theory the effective Hamiltonian is identical to the dilatation operator of N=4 Super Yang-Mills theory in the considered subsector. Our results therefore represent a strong support for the conjectured three-loop integrability of planar N=4 SYM and are in disagreement with a recent dual string theory finding. Finally, we study the stability of the large N integrability against nonsupersymmetric deformations of the model.

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Language(s): eng - English
 Dates: 2004-02-16
 Publication Status: Issued
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 Identifiers: eDoc: 51213
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Title: Nuclear Physics B
  Alternative Title : NUCLEAR PHYSICS B
Source Genre: Journal
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Pages: - Volume / Issue: 679 (1-2) Sequence Number: - Start / End Page: 127 - 142 Identifier: -