Qubits from Black Holes in M-theory on K3 Surface
arXiv:1601.07610 · doi:10.1142/S0219887816500754
Abstract
Using M-theory compactification, we develop a three factor separation for the scalar submanifold of N=2 seven dimensional supergravity associated with 2-cycles of the K3 surface. Concretely, we give an interplay between the three scalar submanifold factors and the extremal black holes obtained from M2-branes wrapping such 2-cycles. Then, we show that the corresponding black hole charges are linked to one, two and four qubit systems.
18 pages, latex. References added, typos corrected and minor changes added. Comments on F-theory on K3 surafce and Segre embedding are added. Accepted for publication in International Journal of Geometric Methods in Modern Physics (2016)
References in corpus (4)
Cited by in corpus (5)
- Qubit Transport Model for Unitary Black Hole Evaporation without Firewalls
- Four Black Holes Shadows
- Four-qubit Systems and Dyonic Black Hole-Black Branes in Superstring Theory
- Stringy Dyonic Solutions and Clifford Structures
- Quantum circuit simulation of black hole evaporation and Maxwell demon interpretation