Quantum Technologies: Current Outlook, Challenges and Opportunities Journal Article André J. Chaves; Denys Derlian C. Brito; Rodrigo P. Ferreira; Victor G. M. Duarte @article{235536,
title = {Quantum Technologies: Current Outlook, Challenges and Opportunities},
author = {Andr\'{e} J. Chaves and Denys Derlian C. Brito and Rodrigo P. Ferreira and Victor G. M. Duarte},
url = {https://www.sige.ita.br/edicoes-anteriores/2023/st/235536_1.pdf},
issn = {1983-7402},
year = {2026},
date = {2026-08-03},
journal = {Spectrum - The Journal of Operational Applications in Defense Areas},
volume = {27},
number = {1},
pages = {7\textendash12},
abstract = {Quantum technologies result from the use of the laws of modern physics in increasingly sophisticated devices, promising enormous advances in computing, communication, and sensing, for both civilian and military use. As a consequence of technological progress that has miniaturized instrumentation down to atomic scales, we are witnessing the nanoscale manipulation of physical systems using intrinsic properties of quantum systems, such as entanglement. Quantum sensors are able to go beyond classical detection limits. Quantum communication offers a security advantage over classical communication. Quantum computing enables the solution of problems considered impossible to solve with classical computers. These technologies emerge as a result of advances in science and engineering, enabling the manipulation of systems at the atomic level. In this article we briefly present the fundamental concepts of quantum mechanics, the main examples of quantum technologies in sensing, communication, and computing. We show military applications and conclude by presenting the challenges and opportunities.},
keywords = {Military Applications, Quantum Communication, Quantum Computing, Quantum Sensing, Quantum Technologies},
pubstate = {published},
tppubtype = {article}
}
Quantum technologies result from the use of the laws of modern physics in increasingly sophisticated devices, promising enormous advances in computing, communication, and sensing, for both civilian and military use. As a consequence of technological progress that has miniaturized instrumentation down to atomic scales, we are witnessing the nanoscale manipulation of physical systems using intrinsic properties of quantum systems, such as entanglement. Quantum sensors are able to go beyond classical detection limits. Quantum communication offers a security advantage over classical communication. Quantum computing enables the solution of problems considered impossible to solve with classical computers. These technologies emerge as a result of advances in science and engineering, enabling the manipulation of systems at the atomic level. In this article we briefly present the fundamental concepts of quantum mechanics, the main examples of quantum technologies in sensing, communication, and computing. We show military applications and conclude by presenting the challenges and opportunities. |