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Charge Quantization of Axion-Dilaton Black Holes

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arxiv hep-th/9302109 v1 pith:CIRO4AIN submitted 1993-02-23 hep-th

classification hep-th
keywords axion-dilatonchargessolutionsblackunderassociatedasymptoticblack-hole
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abstract

We present axion-dilaton black-hole and multi-black-hole solutions of the low-energy string effective action. Under $SL(2,R)$ electric-magnetic duality rotations only the ``hair" (charges and asymptotic values of the fields) of our solutions is transformed. The functional form of the solutions is duality-invariant. Axion-dilaton black holes with zero entropy and zero area of the horizon form a family of stable particle-like objects, which we call {\it holons}. We study the quantization of the charges of these objects and its compatibility with duality symmetry. In general the spectrum of black-hole solutions with quantized charges is not invariant under $SL(2,R)$ but only under $SL(2,Z)$ or one of its subgroups $\Gamma_{l}$. Because of their transformation properties, the asymptotic value of the axion-dilaton field of a black hole may be associated with the modular parameter $\tau$ of some complex torus and the integer numbers $(n,m)$ that label its quantized electric and magnetic charges may be associated with winding numbers.

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Cited by 2 Pith papers

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  1. Supersymmetry and Attractors in N = 4 Supergravity: The Superconformal Approach

    hep-th 2026-03 unverdicted novelty 5.5 of 10

    Numerical confirmation of the attractor mechanism and 1/4 supersymmetry preservation for generic dyonic extremal black holes in pure N=4 supergravity.

  2. Smarr Mass formulas for BPS multicenter Black Holes

    hep-th 2019-08 conditional novelty 4.0 of 10

    A mass formula and a Smarr-like first law for two-center BPS black holes are derived, predicting a continuous family of solutions with arbitrary intercenter distance.

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