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- W1978374316 abstract "It is generally known that the holomorphic anomaly equations in topological string theory reflect the quantum mechanical nature of the topological string partition function. We present two new results which make this assertion more precise: (i) we give a new, purely holomorphic version of the holomorphic anomaly equations, clarifying their relation to the heat equation satisfied by the Jacobi theta series; (ii) in cases where the moduli space is a Hermitian symmetric tube domain $G/K$, we show that the general solution of the anomaly equations is a matrix element $IP{Psi | g | Omega}$ of the Schrodinger-Weil representation of a Heisenberg extension of $G$, between an arbitrary state $bra{Psi}$ and a particular vacuum state $ket{Omega}$. Based on these results, we speculate on the existence of a one-parameter generalization of the usual topological amplitude, which in symmetric cases transforms in the smallest unitary representation of the duality group $G'$ in three dimensions, and on its relations to hypermultiplet couplings, nonabelian Donaldson-Thomas theory and black hole degeneracies." @default.
- W1978374316 created "2016-06-24" @default.
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- W1978374316 date "2006-12-22" @default.
- W1978374316 modified "2023-10-10" @default.
- W1978374316 title "Topological wave functions and heat equations" @default.
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- W1978374316 doi "https://doi.org/10.1088/1126-6708/2006/12/070" @default.
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