most citedPhysical-Layer Security of Pinching-Antenna Systems

1 citations · 1 across the 1 of their papers we have counts for

collaborators

7 papers

cs.IT20261 cited

Physical-Layer Security of Pinching-Antenna Systems

Osamah S. Badarneh, Hugerles S. Silva, Meysam Ghanbari +4

In this paper, we investigate the performance of physical-layer security of a pinching-antenna system on a lossless dielectric waveguide. In particular, the system uses a single pi…

eess.SP2025

When Future Communications Shift Toward Narrow Beams: A Forward Looking Survey on Pointing Errors and Alignment Limits

Meysam Ghanbari, Mohammad Taghi Dabiri, Osamah S. Badarneh +4

Directional links in free-space optical (FSO), millimeter-wave (mmWave), and terahertz (THz) systems are a cornerstone of emerging 6G networks, yet their reliability is fundamental…

eess.SP2025

Towards City-Scale Quantum Timing: Wireless Synchronization via Quantum Hubs

Mohammad Taghi Dabiri, Mazen Hasna, Rula Ammuri +2

This paper presents a novel wireless quantum synchronization framework tailored for city-scale deployment using entangled photon pairs and passive corner cube retroreflector (CCR)…

eess.SP2025

CV Quantum Communications with Angular Rejection Filtering: Modeling and Security Analysis

Mohammad Taghi Dabiri, Meysam Ghanbari, Rula Ammuri +3

Continuous-variable quantum key distribution (CVQKD) over free-space optical links is a promising approach for secure communication, but its performance is limited by turbulence, p…

eess.SP2025

AI Assisted Next Gen Outdoor Optical Networks: Camera Sensing for Monitoring and User Localization

Meysam Ghanbari, Mohammad Taghi Dabiri, Rula Ammuri +2

We consider outdoor optical access points (OAPs), which, enabled by recent advances in metasurface technology, have attracted growing interest. While OAPs promise high data rates a…

eess.SP2025

Deep Learning Surrogate for Fast CIR Prediction in Reactive Molecular Diffusion Advection Channels

Meysam Ghanbari, Mohammad Taghi Dabiri, Mazen Hasna +2

Accurate channel impulse response (CIR) modeling in molecular communication (MC) often requires solving coupled reactive diffusion-advection equations, which is computationally exp…