Terahertz (THz) radiation is a very appealing band of the electromagnetic spectrum due to its practical applications. In this context, the THz generation and manipulation is an essential part of the technological development. The demand of THz antennas is still high because it is already difficult to obtain directive, efficient, planar, low-cost, and easy-to-fabricate THz radiating systems. In this regard, Fabry-Perot cavity leaky-wave antennas are gaining increasing attention at THz, due to their very interesting radiating features: the combination of planar designs with metamaterials and metasurfaces could offer a promising platform for future THz manipulation technologies. In this short review, we focus on different classes of leaky-wave...
The tunable properties of nematic liquid crystals (NLC) are here exploited in a peculiar leaky waveg...
In recent years, microwave, millimeter-wave, and THz applications such as medical and security imagi...
International audienceThis paper presents a complete dispersion analysis of a tunable graphene-based...
Terahertz frequencies are increasingly gaining attention due to the recent efforts made in narrowin...
In this work we examine the recent efforts made in the design of either efficient or reconfigurable ...
In this work we examine the recent efforts made in the design of either efficient or reconfigurable ...
In this paper, a systematic design of Fabry-Perot cavity antennas based on leaky waves is proposed i...
In this work, a systematic design of Fabry-Perot cavity antennas based on leaky waves is proposed in...
Tunable THz antennas based on a single unpatterned graphene sheet placed inside a grounded dielectri...
A novel terahertz (THz) Fabry–Perot cavity (FPC) antenna is proposed, based on a multistack of alter...
Metamaterials have provided applications in spectral ranges covering radio frequencies and ultraviol...
Tunable THz antennas based on a single unpatterned graphene sheet placed inside a grounded dielectri...
International audienceIn this work, the tunable properties of nematic liquid crystals are exploited ...
Because of a growing bandwidth problem within wireless communications, the terahertz (THz) spectrum ...
In this paper, a novel graphene-based leaky-wave antenna is presented. The frequency of the proposed...
The tunable properties of nematic liquid crystals (NLC) are here exploited in a peculiar leaky waveg...
In recent years, microwave, millimeter-wave, and THz applications such as medical and security imagi...
International audienceThis paper presents a complete dispersion analysis of a tunable graphene-based...
Terahertz frequencies are increasingly gaining attention due to the recent efforts made in narrowin...
In this work we examine the recent efforts made in the design of either efficient or reconfigurable ...
In this work we examine the recent efforts made in the design of either efficient or reconfigurable ...
In this paper, a systematic design of Fabry-Perot cavity antennas based on leaky waves is proposed i...
In this work, a systematic design of Fabry-Perot cavity antennas based on leaky waves is proposed in...
Tunable THz antennas based on a single unpatterned graphene sheet placed inside a grounded dielectri...
A novel terahertz (THz) Fabry–Perot cavity (FPC) antenna is proposed, based on a multistack of alter...
Metamaterials have provided applications in spectral ranges covering radio frequencies and ultraviol...
Tunable THz antennas based on a single unpatterned graphene sheet placed inside a grounded dielectri...
International audienceIn this work, the tunable properties of nematic liquid crystals are exploited ...
Because of a growing bandwidth problem within wireless communications, the terahertz (THz) spectrum ...
In this paper, a novel graphene-based leaky-wave antenna is presented. The frequency of the proposed...
The tunable properties of nematic liquid crystals (NLC) are here exploited in a peculiar leaky waveg...
In recent years, microwave, millimeter-wave, and THz applications such as medical and security imagi...
International audienceThis paper presents a complete dispersion analysis of a tunable graphene-based...