Abstract With the development of quantum communication technology, the optical router, as a component in quantum information transmission, is crucial for achieving an efficient and reliable
McKinsey''s quantum communication report explores growing investment in QComm capabilities to help meet demand for enhanced cybersecurity and quantum computing.
Embraces diverse and emerging fields, ranging from nanotechnology in photonics to advanced quantum and optoelectronic applications. Publishes special issues on topics of current interest.
In this paper we use the pictorial representation of quantum-circuit diagrams to put atomic and optical interferometry on the same footing and to demonstrate the equivalence of various
Here, we provide an overview of the advances in quantum photonic chips for quantum communication, beginning with a summary of the prevalent photonic integrated fabrication platforms and key
We present an efcient method for monitoring the physical layer security fi of a high-data-rate classical optical communication network using a modulated continuous-variable quantum signal.
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Secure key rate (SKR) of point-point quantum key distribution (QKD) is fundamentally bounded by the rate-loss limit. Recent breakthrough of twin-field
In addition, the possible integration of these systems with quantum communication technologies and the recent progression have been outlined. Finally, the possibility of future research
The central theme of our programs has been to advance the understanding of optical and quantum communication, radar, and sensing systems. Broadly speaking, this has entailed: (1) developing
Antiresonant hollow-core fiber enables longer-distance, lower-latency quantum communication with broader technology compatibility.
Quantum communication based on quantum key distribution (QKD) is achieved with optical telecommunication links, either via optical fibers or via the propagation of light in vacuum (or in the
Abstract This article provides a quick overview of quantum communication, bringing together several innovative aspects of quantum enabled transmission. We first take a neutral look at
GitHub Gist: star and fork AshwinD24''s gists by creating an account on GitHub.
Here, we propose quantum metric-based optical selection rules. We unveil a universal quantum metric-oscillator strength correspondence for linear polarization of light and establish valley-contrasted
The Optics Editorial Office has decided to organize this Special Issue to give researchers a platform with which to publish novel experimental and theoretical results in optical methods for quantum
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Optical Mirror Selection FAQ Q: Is metallic or dielectric mirror better for use with polarized light? A: It depends on the characteristics of the light (wavelength, type
More information: Murat Muradoglu et al, Quantum-assured magnetic navigation achieves positioning accuracy better than a strategic-grade INS in airborne and ground-based field trials, arXiv (2025).
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We demonstrate an energy-efficient approach that enables reliable satellite tracking at substantially reduced beacon power by treating tracking as a weak-signal estimation task.
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Zan Li (China) Dynamic Spectrum Control-Based Covert Integrated Air-Ground Communication Follow
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Both dispersion (optical pulse broadening) and optical loss (whether it is fiber attenuation or passive component insertion loss) affect overall system bandwidth. Bandwidth is essentially the information
The objective of this Perspective is to review the recent advances made towards developing integrated quantum photonic technologies, as well as the current challenges and future
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Exploring cutting-edge advances of integrated photonics, recent breakthroughs and challenges are highlighted, showing a roadmap for
Furthermore, the study provides an in-depth evaluation of the performance of these quantum-safe protocols within the context of optical communication systems. This includes an analysis of their
Abstract Results are presented of an investigation of an ADSS optical cable for resistance to tracking. This cable is intended for a zonal communication line that is mounted on the supports of
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The optical selection rules dictate symmetry-allowed/forbidden transitions, playing a decisive role in engineering exciton quantum states and designing optoelectronic devices. While both
In this study, the authors define algorithms that are specific instances of this approach and evaluate them in comparison to Dijkstra''s shortest path algorithm and a fully knowledge-aware
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