This chapter summarizes the physical properties of THz antennas, provides a summary of some of the most important recent developments in the field of energy harvesting of Earth long-wave infrared radiation, discusses the potential applications and identifies the future challenges and opportunities. In particular, a THz antenna is designed in order to transform the thermal energy, provided by the Sun and re-emitted from the Earth, in electricity. The proposed antenna is a square spiral of gold printed on a low cost dielectric substrate. Simulations have been conducted in order to investigate the behavior of the antenna illuminated by a circularly polarized plane wave with an amplitude chosen according to the Stefan-Boltzmann radiation law. Moreover, these THz antennas could be coupled with other components to obtain direct rectification of T radiation. As a consequence, these structures further optimized could be a promising alternative to the conventional photovoltaic solar cells.

Earth long-wave infrared emission, new ways to harvest energy / Mescia, Luciano; Bia, Pietro; Losito, Onofrio. - (2017), pp. 1875-1899. [10.4018/978-1-5225-1671-2.ch066]

Earth long-wave infrared emission, new ways to harvest energy

MESCIA, Luciano;BIA, Pietro;LOSITO, Onofrio
2017-01-01

Abstract

This chapter summarizes the physical properties of THz antennas, provides a summary of some of the most important recent developments in the field of energy harvesting of Earth long-wave infrared radiation, discusses the potential applications and identifies the future challenges and opportunities. In particular, a THz antenna is designed in order to transform the thermal energy, provided by the Sun and re-emitted from the Earth, in electricity. The proposed antenna is a square spiral of gold printed on a low cost dielectric substrate. Simulations have been conducted in order to investigate the behavior of the antenna illuminated by a circularly polarized plane wave with an amplitude chosen according to the Stefan-Boltzmann radiation law. Moreover, these THz antennas could be coupled with other components to obtain direct rectification of T radiation. As a consequence, these structures further optimized could be a promising alternative to the conventional photovoltaic solar cells.
2017
Renewable and Alternative Energy: Concepts, Methodologies, Tools, and Applications
9781522516712
9781522516729
IGI Global
Earth long-wave infrared emission, new ways to harvest energy / Mescia, Luciano; Bia, Pietro; Losito, Onofrio. - (2017), pp. 1875-1899. [10.4018/978-1-5225-1671-2.ch066]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/106242
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