Quantum Technologies and the Engineering of Josephson JunctionBased Sensors: Disruptive Innovation as a Strategic Differential for National Security and Defense

Fernando M Araujo Moreira
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Abstract

The so-called area of quantum technologies is a new and disruptive technological field, essentially from physics and engineering, with the ability to affect almost all human activities. They are based on the properties of quantum mechanics like quantum tunneling, quantum entanglement, and quantum superposition. Examples of areas of application of these emerging technologies are quantum computing, quantum communications, quantum sensing, quantum cryptography, quantum internet, quantum imaging, quantum metrology, quantum biology, among others. These technologies are of the interest of both the defense and security industry, and military and governmental actors. For military applications, and after a strong advanced engineering process, these technologies introduce new capabilities, improving effectiveness and increasing precision, thus leading to the so-called quantum warfare, wherein new military strategies, doctrines, policies, and ethics should be established. In particular, these military applications of quantum technologies can be described for various warfare domains like land, air, space, electronic, cyber, and underwater warfare and also for intelligence, surveillance, target acquisition and reconnaissance. Among those applications mentioned before, quantum computing is expected to have a number of important uses such as optimization and machine learning, associated to both artificial intelligence and blockchain. Quantum computers are perhaps best known for their expected ability to carry out Shor’s algorithm, which can be used to factorize large numbers and is an important process in the securing of data transmissions, essential for military applications. In this review of our own work, we show the physics and some of the applications of the Josephson junction which plays and important and essential role in the fabrication of quantum computers with superconducting qubits. Nowadays, applications of Josephson junction devices go from the most sensitive sensor to measure magnetic flux, called S.QU.I.D. (from Superconducting Quantum Interference Device) to the core of quantum computers, the quantum bits. The Josephson junction is an old quantum engine for a rising new world with incredible disruptive technological possibilities in engineering, especially in military applications where it plays a fundamental strategic differential for National Security and Defense.
量子技术和基于约瑟夫森结的传感器工程:颠覆性创新作为国家安全和国防的战略差异
所谓的量子技术领域是一个新的、颠覆性的技术领域,本质上来自物理学和工程学,具有影响几乎所有人类活动的能力。它们基于量子力学的特性,如量子隧穿、量子纠缠和量子叠加。这些新兴技术的应用领域包括量子计算、量子通信、量子传感、量子密码学、量子互联网、量子成像、量子计量、量子生物学等。这些技术是国防和安全工业以及军事和政府参与者都感兴趣的。在军事应用方面,经过强大的先进工程过程,这些技术引入了新的能力,提高了有效性,提高了精度,从而导致了所谓的量子战争,其中应该建立新的军事战略,理论,政策和道德。特别是,量子技术的这些军事应用可以描述为各种战争领域,如陆地、空中、太空、电子、网络和水下战争,也可以用于情报、监视、目标获取和侦察。在前面提到的应用中,量子计算预计将具有许多重要的用途,例如与人工智能和区块链相关的优化和机器学习。量子计算机可能以其执行肖尔算法的预期能力而闻名,肖尔算法可用于分解大数,是确保数据传输安全的重要过程,对军事应用至关重要。在我们自己的工作回顾中,我们展示了约瑟夫森结的物理和一些应用,它在超导量子比特的量子计算机制造中起着重要和必不可少的作用。如今,约瑟夫森结器件的应用从最灵敏的传感器到测量磁通量,称为s.qui.d。(从超导量子干涉装置)到量子计算机的核心——量子比特。约瑟夫森结是一个正在崛起的新世界的旧量子引擎,在工程领域具有令人难以置信的颠覆性技术可能性,特别是在军事应用中,它对国家安全和国防起着根本性的战略差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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