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arxiv: 1503.02858 · v2 · submitted 2015-03-10 · 🌀 gr-qc · astro-ph.HE· hep-th· quant-ph

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Horizon Wave-Function and the Quantum Cosmic Censorship

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classification 🌀 gr-qc astro-ph.HEhep-thquant-ph
keywords alphablackcosmichorizonquantumwave-functioncensorshipcharge-to-mass
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We investigate the Cosmic Censorship Conjecture by means of the horizon wave-function (HWF) formalism. We consider a charged massive particle whose quantum mechanical state is represented by a spherically symmetric Gaussian wave-function, and restrict our attention to the superxtremal case (with charge-to-mass ratio $\alpha>1$), which is the prototype of a naked singularity in the classical theory. We find that one can still obtain a normalisable HWF for $\alpha^2<{2}$, and this configuration has a non-vanishing probability of being a black hole, thus extending the classically allowed region for a charged black hole. However, the HWF is not normalisable for $\alpha^2 > 2$, and the uncertainty in the location of the horizon blows up at $\alpha^2=2$, signalling that such an object is no more well-defined. This perhaps implies that a quantum Cosmic Censorhip might be conjectured by stating that no black holes with charge-to-mass ratio greater than a critical value (of the order of $\sqrt{2}$) can exist.

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