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Topological Landau-Ginzburg theory with a rational potential and the dispersionless KP hierarchy
Authors:Shogo Aoyama  Yuji Kodama
Affiliation:(1) Department of Physics, Shizuoka University, 422 Shizuoka, Japan;(2) Department of Mathematics, Ohio State University, 43210 Columbus, OH, USA;(3) Present address: Department of Communication Engineering, Osaka University, 2-1 Yamada Oka Suita, 565 Osaka, Japan
Abstract:Based on the dispersionless KP (dKP) theory, we study a topological Landau-Ginzburg (LG) theory characterized by a rational potential. Writing the dKP hierarchy in a general form treating all the primaries in an equal basis, we find that the hierarchy naturally includes the dispersionless (continuous) limit of Toda hierarchy and its generalizations having a finite number of primaries. Several flat solutions of the topological LG theory are obtained in this formulation, and are identified with those discussed by Dubrovin. We explicitly construct gravitational descendants for all the primary fields. Giving a residue formulae for the 3-point functions of the fields, we show that these 3-point functions satisfy the topological recursion relation. The string equation is obtained as the generalized hodograph solutions of the dKP hierarchy, which show that all the gravitational effects to the constitutive equations (2-point functions) can be renormalized into the coupling constants in the small phase space. Supported in part by NSF grant DMS-9403597.
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