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Tiny Graviton Matrix Theory: DLCQ of IIB Plane-Wave String Theory, A Conjecture

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arxiv hep-th/0406214 v3 pith:RT2RWWQK submitted 2004-06-23 hep-th

classification hep-th
keywords theoryconjecturedlcqmatrixplane-wavebackgroundgravitonhamiltonian
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We conjecture that the discrete light-cone quantization (DLCQ) of strings on the maximally supersymmetric type IIB plane-wave background in the sector with J units of light-cone momentum is a supersymmetric 0+1 dimensional U(J) gauge theory (quantum mechanics) with PSU(2|2)x PSU(2|2)x U(1) superalgebra. The conjectured Hamiltonian for the plane-wave matrix (string) theory, the tiny graviton matrix theory, is the quantized (regularized) three brane action on the same background. We present some pieces of evidence for this conjecture through analysis of the Hamiltonian, its vacua, spectrum and coupling constant. Moreover, we discuss an extension of our conjecture to the DLCQ of type IIB strings on AdS_5 x S^5 geometry.

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  1. Towards Quantizing Null p-branes: Light-Cone Gauge Analysis and Physical Hilbert Space

    hep-th 2024-12 conditional novelty 6.0 of 10

    Quantized null p-branes in light-cone gauge have physical Hilbert spaces split into p+1 classes of standing-wave states.

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