Quantum advantage in batteries for Sachdev-Ye-Kitaev interactions

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1. Verfasser: Francica, Gianluca
Format: Preprint
Veröffentlicht: 2024
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author Francica, Gianluca
author_facet Francica, Gianluca
contents A quantum advantage can be achieved in the unitary charging of quantum batteries if their cells are interacting. Here, we try to clarify with some analytical calculations whether and how this quantum advantage is achieved for sparse Sachdev-Ye-Kitaev (SYK) interactions and in general for fermionic interactions with disorder. To do this we perform a simple modelization of the interactions. In particular, we find that for $q$-point rescaled sparse SYK interactions the quantum advantage goes as $Γ\sim N^{\frac{α-q}{2}+1}$ for $q\geqα\geq q/2$ and $Γ\sim N^{1-\fracα{2}}$ for $q/2>α\geq 0$, where $α$ is related to the connectivity and $N$ is the number of cells. This shows how we can get $Γ\sim N$, i.e., an average power that scales as $N^2$ thanks to the disorder.
format Preprint
id arxiv_https___arxiv_org_abs_2405_03306
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum advantage in batteries for Sachdev-Ye-Kitaev interactions
Francica, Gianluca
Quantum Physics
A quantum advantage can be achieved in the unitary charging of quantum batteries if their cells are interacting. Here, we try to clarify with some analytical calculations whether and how this quantum advantage is achieved for sparse Sachdev-Ye-Kitaev (SYK) interactions and in general for fermionic interactions with disorder. To do this we perform a simple modelization of the interactions. In particular, we find that for $q$-point rescaled sparse SYK interactions the quantum advantage goes as $Γ\sim N^{\frac{α-q}{2}+1}$ for $q\geqα\geq q/2$ and $Γ\sim N^{1-\fracα{2}}$ for $q/2>α\geq 0$, where $α$ is related to the connectivity and $N$ is the number of cells. This shows how we can get $Γ\sim N$, i.e., an average power that scales as $N^2$ thanks to the disorder.
title Quantum advantage in batteries for Sachdev-Ye-Kitaev interactions
topic Quantum Physics
url https://arxiv.org/abs/2405.03306