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On the Dynamics of Finite-Gap Solutions in Classical String Theory

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arxiv hep-th/0601194 v2 pith:7RUEIBEO submitted 2006-01-25 hep-th nlin.SI

On the Dynamics of Finite-Gap Solutions in Classical String Theory

classification hep-th nlin.SI
keywords dynamicssolutionstringclassicalcurvefinite-gapgeneralintegrable
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the dynamics of finite-gap solutions in classical string theory on R x S^3. Each solution is characterised by a spectral curve, \Sigma, of genus g and a divisor, \gamma, of degree g on the curve. We present a complete reconstruction of the general solution and identify the corresponding moduli-space, M^(2g)_R, as a real symplectic manifold of dimension 2g. The dynamics of the general solution is shown to be equivalent to a specific Hamiltonian integrable system with phase-space M^(2g)_R. The resulting description resembles the free motion of a rigid string on the Jacobian torus J(\Sigma). Interestingly, the canonically-normalised action variables of the integrable system are identified with certain filling fractions which play an important role in the context of the AdS/CFT correspondence.

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