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用于量子放大的源自人类心率的私密弱随机序列。

Private Weakly-Random Sequences from Human Heart Rate for Quantum Amplification.

作者信息

Stankiewicz Maciej, Horodecki Karol, Sakarya Omer, Makowiec Danuta

机构信息

Institute of Mathematics, Faculty of Mathematics, Physics and Informatics, University of Gdańsk, Wita Stwosza 57, 80-308 Gdańsk, Poland.

International Centre for Theory of Quantum Technologies (ICTQT), University of Gdańsk, 80-308 Gdańsk, Poland.

出版信息

Entropy (Basel). 2021 Sep 8;23(9):1182. doi: 10.3390/e23091182.

Abstract

We investigate whether the heart rate can be treated as a semi-random source with the aim of amplification by quantum devices. We use a semi-random source model called ε-Santha-Vazirani source, which can be amplified via quantum protocols to obtain a fully private random sequence. We analyze time intervals between consecutive heartbeats obtained from Holter electrocardiogram (ECG) recordings of people of different sex and age. We propose several transformations of the original time series into binary sequences. We have performed different statistical randomness tests and estimated quality parameters. We find that the heart can be treated as a good enough, and private by its nature, source of randomness that every human possesses. As such, in principle, it can be used as input to quantum device-independent randomness amplification protocols. The properly interpreted ε parameter can potentially serve as a new characteristic of the human heart from the perspective of medicine.

摘要

我们研究心率是否可被视为一种半随机源,目的是通过量子设备进行放大。我们使用一种名为ε-桑塔-瓦齐拉尼源的半随机源模型,该模型可通过量子协议进行放大以获得完全私密的随机序列。我们分析了从不同性别和年龄人群的动态心电图(ECG)记录中获取的连续心跳之间的时间间隔。我们提出了将原始时间序列转换为二进制序列的几种变换方法。我们进行了不同的统计随机性测试并估计了质量参数。我们发现心脏可被视为一种足够好且本质上私密的随机源,每个人都拥有。因此,原则上它可作为量子设备无关的随机放大协议的输入。从医学角度来看,正确解释的ε参数可能潜在地成为人类心脏的一种新特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae47/8470422/19fbc8044807/entropy-23-01182-g001.jpg

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