We discuss the possibility to exploit electromagnetic cloaking for enhancing the performances of communication antennas installed on nanosatellite platforms. As a case study, we consider a CubeSTAR system and show that properly designed metasurfaces can be effectively used to minimize the impact of its deployable payload sensors on both radiation and electrical characteristics of the antennas. The results discussed here pave the way to new strategies for the design of extremely compact nanosatellite platforms equipped with multifunctional antennas and sensors
Among the different cloaking applications proposed in the literature, the antenna framework has emer...
A novel compact S-band antenna concept hosted on a 1U form factor CubeSat platform is presented. Non...
With the rapid growth of miniaturized devices for space missions, CubeSats as small satellites are b...
We discuss the possibility to exploit electromagnetic cloaking for enhancing the performances of com...
In this contribution, we show how electromagnetic cloaking may be used to enhance the performances o...
The aim of this contribution is showing how electromagnetic cloaking may be used to enhance the perf...
Electromagnetic cloaking represents one of the most fascinating possibilities enabled by metamateria...
We propose a low observable satellite covered by layered materials. The dielectric properties of the...
Small satellites are revolutionizing the space industry [1]. In particular, nanosatellites are very ...
In this contribution, we describe how advanced cloaking metasurfaces allows expanding the functional...
CubeSats are a type of small satellites (< 500 kg) that weigh several kilograms and consist of multi...
The possibility to reduce the total scattering by an illuminated object is one of the most intriguin...
We discuss the use of metasurfaces and plasmonic metamaterials to minimize the scattering from recei...
In this work, we review our recent research on advanced cloaking metasurfaces used to cover monopole...
We provide a review of our results on the design of mantle cloaking devices for antenna applications...
Among the different cloaking applications proposed in the literature, the antenna framework has emer...
A novel compact S-band antenna concept hosted on a 1U form factor CubeSat platform is presented. Non...
With the rapid growth of miniaturized devices for space missions, CubeSats as small satellites are b...
We discuss the possibility to exploit electromagnetic cloaking for enhancing the performances of com...
In this contribution, we show how electromagnetic cloaking may be used to enhance the performances o...
The aim of this contribution is showing how electromagnetic cloaking may be used to enhance the perf...
Electromagnetic cloaking represents one of the most fascinating possibilities enabled by metamateria...
We propose a low observable satellite covered by layered materials. The dielectric properties of the...
Small satellites are revolutionizing the space industry [1]. In particular, nanosatellites are very ...
In this contribution, we describe how advanced cloaking metasurfaces allows expanding the functional...
CubeSats are a type of small satellites (< 500 kg) that weigh several kilograms and consist of multi...
The possibility to reduce the total scattering by an illuminated object is one of the most intriguin...
We discuss the use of metasurfaces and plasmonic metamaterials to minimize the scattering from recei...
In this work, we review our recent research on advanced cloaking metasurfaces used to cover monopole...
We provide a review of our results on the design of mantle cloaking devices for antenna applications...
Among the different cloaking applications proposed in the literature, the antenna framework has emer...
A novel compact S-band antenna concept hosted on a 1U form factor CubeSat platform is presented. Non...
With the rapid growth of miniaturized devices for space missions, CubeSats as small satellites are b...