EDBT 2026 Demo / reviewers in the wild / expert
Hichem Guerboukha
dblp:224/0784
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8ranked-venue papers
0as first author
7since 2021 · last 2026
0000-0002-7775-2011ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 4 · 3 since 2021Security and privacy · 3 · 3 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Metasurface-in-the-Middle Attack: EM Wavefront Manipulation Threats and CountermeasuresabstractMetasurfaces enable controllable manipulation of electromagnetic waves and have been shown to be valuable for wireless communications in many diverse ways. In this paper, we explore the notion that these useful components could also provide opportunities for a malicious agent. In particular, we define and experimentally demonstrate for the first time a “MetaSurface-in-the-Middle” (MSITM) attack. In this attack, the adversary Eve places a metasurface in the path of a directive transmission between Alice and Bob and targets to re-direct a portion of the signal towards herself, without being detected. Specifically, we show how Eve can design a metasurface that induces abrupt phase changes at the interface of the metasurface to controllably diffract directional links and establish furtive eavesdropping links. We explore the theoretical foundations of the MSITM attack and demonstrate that an effective metasurface can be prototyped in under 5 min at a minimal cost. We experimentally demonstrate the attack in a THz time-domain system and perform a set of over-the-air experiments. Our results indicate that the MSITM attack yields an acute vulnerability that can significantly reduce empirical secrecy capacity while leaving a minimal energy footprint, making the attack challenging to detect. Zhambyl Shaikhanov, Fahid Hassan, Hichem Guerboukha, Daniel M. Mittleman, Edward W. Knightly |
IEEE Trans. Netw. | 3 |
| 2025 | Blockage Mitigation via Curved Airy Beams in Near Field Terahertz Communications Beyond 6GabstractThe terahertz (THz) spectrum holds immense potential for advanced wireless communication systems due to abundant available bandwidth and high data rates. However, a major challenge in deploying THz systems is susceptibility to blockage, which can greatly impair signal propagation and negatively affect the reliability of the communication link. This paper focuses on applying self-accelerated beams for blockage mitigation at THz frequencies. These beams can follow curved trajectories as they propagate in free space. Trajectories can be engineered to overcome physical obstacles present in the beam path. As we show through extensive simulations, self-accelerated beams perform better than conventional Gaussian beams in terms of received power when obstacles are present. This approach offers new possibilities for reliable THz communications in practical deployment scenarios. Md Hasibul Islam, Vitaly Petrov, Hichem Guerboukha |
CCNC | 3 |
| 2025 | Downlink Multi-User Sub-THz Communication with a Programmable Metasurface
Fahid Hassan, Zhambyl Shaikhanov, Jeffrey Lei, Hichem Guerboukha, Hou-Tong Chen, Chun-Chieh Chang, Sadhvikas Addamane, Michael P. Lilly, Daniel M. Mittleman, Edward W. Knightly |
INFOCOM | 4 |
| 2025 | Wavefront Hopping for Physical Layer Security in 6G and Beyond Near-Field THz CommunicationsabstractIn this paper, the physical layer security of terahertz (THz) band communications in the near field is discussed and evaluated. First, a novel class of design approaches to enhance the security of near-field THz links is proposed. These approaches are referred to as wavefront hopping schemes, as they exploit the properties of different THz wavefronts when propagating beams in the near field (particularly, THz Bessel beams and THz Airy beams). Then, a compound evaluation framework is delivered to assess both the performance and the security level of a given single-beam or multi-beam solution for a near-field THz system. Finally, a performance evaluation is conducted illustrating the performance/secrecy trade-offs associated with the modeled single-beam and multi-beam security schemes for both a single Attacker and a team of cooperating Attackers. Our results indicate that the proposed multi-beam solutions combining THz Airy beam(s) with THz Bessel beam through wavefront hopping lead to a notably decreased probability of message eavesdropping while maintaining nearly identical performance with the single-beam schemes. The contributed security schemes, evaluation methodology, and numerical results facilitate further development in the emerging area of secure near-field THz communications for 6G and beyond wireless networks. Vitaly Petrov, Hichem Guerboukha, Josep Miquel Jornet |
IEEE Trans. Commun. | 2 |
| 2024 | MetaFly: Wireless Backhaul Interception via Aerial Wavefront ManipulationabstractWireless backhaul links, already ubiquitous and expanding further with 5G and beyond, are employed for many critical functions, such as financial trading on Wall Street. In this work, we demonstrate for the first time that such links are acutely vulnerable to a new class of aerial metasurface attacks. In particular, we show how an adversary Eve designs and employs MetaFly to covertly manipulate the electromagnetic wavefront of the signals and remotely eavesdrop on highly directional backhaul links. Exploring the foundation of the attack, we demonstrate Eve’s strategy for generating eavesdropping diffraction beams by inducing pre-defined phase profiles at the aerial metasurface interface. We also show how Eve’s flight navigation approach can dynamically shape radiation patterns based on drone mobility via a wavefront-tailored flight refinement principle. We prototype MetaFly and demonstrate Eve’s lightweight, low-cost, transmissive, and power-free aerial metasurface. We implement the attack and perform a suite of over-the-air experiments in both a large indoor atrium and outdoor rooftops in a large metropolitan area. The results reveal that armed with MetaFly, Eve can intercept backhaul transmissions with nearly zero bit error rate while maintaining minimal impact on legitimate communication. Zhambyl Shaikhanov, Sherif Badran, Hichem Guerboukha, Josep Miquel Jornet, Daniel M. Mittleman, Edward W. Knightly |
SP | 3 |
| 2022 | Metasurface-in-the-Middle Attack: From Theory to ExperimentabstractMetasurfaces enable controllable manipulation of electromagnetic waves and have been shown to improve wireless communications in many diverse ways. In this paper, we define and experimentally demonstrate for the first time a "MetaSurface-in-the-Middle'' (MSITM) attack. In this attack, the adversary Eve places a metasurface in the path of a directive transmission between Alice and Bob and targets to re-direct a portion of the signal towards herself, without being detected. In particular, we show how Eve can design a metasurface that induces abrupt phase changes at the interface of the metasurface to controllably diffract directional links and establish furtive eavesdropping links. We explore the theoretical foundations of the MSITM attack and demonstrate that an effective metasurface can be prototyped in under 5 min at the cost of several cents. We experimentally demonstrate the attack in a THz time-domain system and perform a set of over-the-air experiments. Our results indicate that the MSITM attack yields an acute vulnerability that can significantly reduce empirical secrecy capacity while leaving a minimal energy footprint, making the attack challenging to detect. Zhambyl Shaikhanov, Fahid Hassan, Hichem Guerboukha, Daniel M. Mittleman, Edward W. Knightly |
WISEC | 3 |
| 2022 | Adversarial Metasurfaces: Metasurface-in-the-Middle AttackabstractMetasurfaces enable controllable manipulation of electromagnetic waves and have been shown to improve wireless communications in many diverse ways. Investigating adversarial metasurfaces, we define and experimentally demonstrate for the first time a "MetaSurface-in-the-Middle'' (MSITM) attack in our paper \citeshaikhanov2022MSITM. In the attack, the adversary Eve places a metasurface in the path of a directive transmission between Alice and Bob and targets to re-direct a portion of the signal towards herself, without being detected. Here, we demonstrate the rapid fabrication of the MSITM employing only standard office supplies such as a printer, paper, foil, and laminator. We show that an effective metasurface can be prototyped in under $5$ min at the cost of several cents. We also demo the attack implementation in the THz network, presenting a video of the MSITM attacker establishing a diffractive eavesdropping link while maintaining the legitimate Alice-Bob link. Our results indicate that the attack yields an acute eavesdropping vulnerability while leaving a minimal energy footprint, making the attack challenging to detect. Zhambyl Shaikhanov, Fahid Hassan, Hichem Guerboukha, Daniel M. Mittleman, Edward W. Knightly |
WISEC | 3 |
| 2018 | Live Streaming of Uncompressed 4K Video Using Terahertz Wireless LinksabstractTaming the Terahertz waves is considered the next frontier in wireless communications. While components for ultra-high bandwidth Terahertz wireless communications were in rapid development over the past years, their commercial availability is still lacking. In this paper, we present the design and demonstrate the possibility of assembling high performance hybrid THz communication systems for real-life applications using all commercially available system components. Particularly, two independent tunable lasers operating in the infrared C-band are used as a source for generating the Terahertz carrier wave via heterodyning in a photomixer. One of the laser beams carries the data which is intensity modulated using electro-optic modulator. A zero- bias Schottky diode is used as the detector and demodulator of the data stream followed by the high-gain and low-noise pre-amplifier. The Terahertz carrier frequency is fixed at 138 GHz and the system is characterized by measuring the BER for the PRBS data at 5.5 Gbps. By optimizing the link geometry and decision parameters, an error-free (BER-10) transmission at a link distance of 1m is achieved. Finally, we detail integration of a professional 4K camera into the THz communication link and demonstrate live streaming of uncompressed HD and 4K videos followed by the analysis of link quality. Kathirvel Nallappan, Hichem Guerboukha, Chahé Nerguizian, Maksim Skorobogatiy |
ICC | 2 |