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Black Hole Creation in 2+1 Dimensions

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abstract

When two point particles, coupled to three dimensional gravity with a negative cosmological constant, approach each other with a sufficiently large center of mass energy, then a BTZ black hole is created. An explicit solution to the Einstein equations is presented, describing the collapse of two massless particles into a non-rotating black hole. Some general arguments imply that massive particles can be used as well, and the creation of a rotating black hole is also possible.

fields

hep-th 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

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  • Entanglement inequalities, black holes and the architecture of typical states hep-th · 2025-11-04 · unverdicted · none · ref 52 · internal anchor

    Typical states in large-N holographic CFTs exhibit UV and IR length scales set by energy and charges, producing factorization that isolates black holes via a corona of saturated entanglement wedges and extends ETH to rotating ensembles.