Saltar al contenido principal

Escribe una PREreview

Black Hole Merger as an Event Converting Two Qubits Into One

Publicada
Servidor
Preprints.org
DOI
10.20944/preprints202505.1507.v1

A black hole represents a quantum state that saturates three bounds for the quantum orthogonalization interval. It is a qubit in an equal superposition of its two energy eigenstates, with a vanishing ground state and the nonvanishing one equal to the black hole energy, where the product of the black hole's entropy and temperature amounts to half of the black hole's energy. As two black holes frequently merge into one, it is natural to ask what happens with the qubits they carry. We consider a binary black hole as a quantum system of two independent qubits evolving independently under a common Hamiltonian to show that their merger can be considered in terms of two orthogonal projections of this Hamiltonian onto a two-dimensional Hilbert subspace that also correspond to the Bell states of this two-qubit system.

Puedes escribir una PREreview de Black Hole Merger as an Event Converting Two Qubits Into One. Una PREreview es una revisión de un preprint y puede variar desde unas pocas oraciones hasta un extenso informe, similar a un informe de revisión por pares organizado por una revista.

Antes de comenzar

We will ask you to log in with your ORCID iD. If you don’t have an iD, you can create one.

What is an ORCID iD?

An ORCID iD is a unique identifier that distinguishes you from everyone with the same or similar name.

Comenzar ahora