Area and volume as emergent phenomena from entangled qubits

Fuente: arXiv
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Main Authors: Romero, Juan M., Montoya-González, Emiliano
Format: Preprint
Published: 2025
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author Romero, Juan M.
Montoya-González, Emiliano
author_facet Romero, Juan M.
Montoya-González, Emiliano
contents Recently, a connection has been shown between certain geometric quantities and quantum information theory. In this paper, we demonstrate that geometric quantities such as area and volume can emerge directly from entangled multi-qubit states. In particular, the area of a two-dimensional parallelogram is derived from a 4-qubit entangled state, the vector area of a three-dimensional parallelogram from three 6-qubit entangled states, and the volume of a three-dimensional parallelepiped from a 9-qubit entangled state. Corresponding quantum circuits are constructed and implemented using Qiskit to generate the required entangled states. Given that parallelograms and parallelepipeds serve as elementary building blocks for more complex geometric structures, these results may offer a pathway toward exploring emergent geometry in quantum information frameworks
format Preprint
id arxiv_https___arxiv_org_abs_2505_11487
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Area and volume as emergent phenomena from entangled qubits
Romero, Juan M.
Montoya-González, Emiliano
Quantum Physics
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Recently, a connection has been shown between certain geometric quantities and quantum information theory. In this paper, we demonstrate that geometric quantities such as area and volume can emerge directly from entangled multi-qubit states. In particular, the area of a two-dimensional parallelogram is derived from a 4-qubit entangled state, the vector area of a three-dimensional parallelogram from three 6-qubit entangled states, and the volume of a three-dimensional parallelepiped from a 9-qubit entangled state. Corresponding quantum circuits are constructed and implemented using Qiskit to generate the required entangled states. Given that parallelograms and parallelepipeds serve as elementary building blocks for more complex geometric structures, these results may offer a pathway toward exploring emergent geometry in quantum information frameworks
title Area and volume as emergent phenomena from entangled qubits
topic Quantum Physics
General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2505.11487