In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, deploying a dedicated laser source in the infrared (IR) region. Planar bow-tie nano-antennas with misaligned monopoles are arranged in both an array and a multi-element architecture, and combined with tunnel diodes for rectification. A highly directive IR laser is adopted as the 84-THz source, and the receiving antennas are arranged in such a way to cover an area comparable to that illuminated by the laser beam. A theoretical estimation of the overall system performance in terms of achievable DC power is provided by means of an accurate circuit/electromagnetic co-simulation
In this paper, a novel design of frequency independent nano-antennas is introduced. The design descr...
Low-temperature waste heat in the infrared (IR) wavelength region offers an opportunity to harvest p...
A review, even if not exhaustive, on the current technologies able to harvest energy from Earth&apos...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
In this paper, we investigate several rectenna architectures to exploit THz energy sources in the in...
In this paper, we investigate several rectenna architectures to exploit THz energy sources in the in...
none4noIn this paper, we investigate several rectenna architectures to exploit THz energy sources in...
The increasing energy demands of the world’s population and the quickly diminishing fossil fuel rese...
In the field of renewable energy sources, the sun has rightly a predominant role and many techniques...
In the field of renewable energy sources, the sun has rightly a predominant role and many techniques...
none4noIn the field of renewable energy sources, the sun has rightly a predominant role and many tec...
In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared f...
In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared f...
Single and dual linearly-polarized receiving mode nanoantennas are designed for solar energy harvest...
Rectennas formed from nanodipole antennas terminated by plasmonic metal-insulator-metal (MIM) travel...
In this paper, a novel design of frequency independent nano-antennas is introduced. The design descr...
Low-temperature waste heat in the infrared (IR) wavelength region offers an opportunity to harvest p...
A review, even if not exhaustive, on the current technologies able to harvest energy from Earth&apos...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
In this paper, we investigate several rectenna architectures to exploit THz energy sources in the in...
In this paper, we investigate several rectenna architectures to exploit THz energy sources in the in...
none4noIn this paper, we investigate several rectenna architectures to exploit THz energy sources in...
The increasing energy demands of the world’s population and the quickly diminishing fossil fuel rese...
In the field of renewable energy sources, the sun has rightly a predominant role and many techniques...
In the field of renewable energy sources, the sun has rightly a predominant role and many techniques...
none4noIn the field of renewable energy sources, the sun has rightly a predominant role and many tec...
In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared f...
In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared f...
Single and dual linearly-polarized receiving mode nanoantennas are designed for solar energy harvest...
Rectennas formed from nanodipole antennas terminated by plasmonic metal-insulator-metal (MIM) travel...
In this paper, a novel design of frequency independent nano-antennas is introduced. The design descr...
Low-temperature waste heat in the infrared (IR) wavelength region offers an opportunity to harvest p...
A review, even if not exhaustive, on the current technologies able to harvest energy from Earth&apos...