Does Entanglement Correlation in Ground State Guarantee Quantum Energy Teleportation?

Fuente: arXiv
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Autor principal: Haque, Taisanul
Formato: Preprint
Publicado: 2025
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author Haque, Taisanul
author_facet Haque, Taisanul
contents Although extraction of energy from the ground state is forbidden, one can utilize Quantum Energy Teleportation (QET) protocol for energy extraction -- a two-step protocol involving quantum measurements followed by LOCC. This is an unique method to ``extract energy from ground states'' of quantum systems. QET requires some correlation in the ground state, and entanglement correlation plays a crucial roles as a resource. The general belief is that if the ground state is quantum-correlated via entanglement for two different sites in a quantum system, and if we perform measurements on one of the sites, we can find an LOCC for the other site to successfully accomplish QET. In this paper, we show that this belief may not be true in the case of the Toric Code. We demonstrate this by performing a PVM measurements on spins in the Toric Code. Based on the measurement outcomes, we found that there is no LOCC for successful QET.
format Preprint
id arxiv_https___arxiv_org_abs_2502_07097
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Does Entanglement Correlation in Ground State Guarantee Quantum Energy Teleportation?
Haque, Taisanul
Quantum Physics
Other Condensed Matter
Although extraction of energy from the ground state is forbidden, one can utilize Quantum Energy Teleportation (QET) protocol for energy extraction -- a two-step protocol involving quantum measurements followed by LOCC. This is an unique method to ``extract energy from ground states'' of quantum systems. QET requires some correlation in the ground state, and entanglement correlation plays a crucial roles as a resource. The general belief is that if the ground state is quantum-correlated via entanglement for two different sites in a quantum system, and if we perform measurements on one of the sites, we can find an LOCC for the other site to successfully accomplish QET. In this paper, we show that this belief may not be true in the case of the Toric Code. We demonstrate this by performing a PVM measurements on spins in the Toric Code. Based on the measurement outcomes, we found that there is no LOCC for successful QET.
title Does Entanglement Correlation in Ground State Guarantee Quantum Energy Teleportation?
topic Quantum Physics
Other Condensed Matter
url https://arxiv.org/abs/2502.07097