Abstract:
Un sistema para compensar la dispersión en un sistema de terahercios, el sistema comprendiendo: una fibra óptica configurada para transmitir un impulso óptico; un compensador ópticamente acoplado a la fibra óptica, el compensador configurado para compensar una dispersión del impulso óptico causada cuando el impulso óptico se propaga a través de la fibra óptica; un dispositivo de terahercios ópticamente inducido provisto de una antena, el dispositivo de terahercios ópticamente inducido acoplado ópticamente al compensador, por lo que el dispositivo de terahercios está configurado para transmitir o recibir radiación de terahercios a través de la antena; en el que el dispositivo de terahercios ópticamente inducido es un receptor de terahercios, en el que la antena está ópticamente acoplada al compensador para el muestreo del campo eléctrico formado en la antena desde la radiación de terahercios recibida; en el que compensador es una fibra de cristal fotónico, la fibra de cristal fotónico siendo un compensador fijo y el compensador adicionalmente comprende un conversador ajustable conjuntamente con el compensador fijo.
Abstract:
A system for dispersion compensation in a terahertz system includes an op tical fiber configured to transmit an optical pulse, a compensator optically coupled to the optical fiber, the compensator configured to compensate for a dispersion of the optical pulse caused as the optical pulse propagates thr ough the optical fiber, and an optically induced terahertz device optically coupled to the compensator, whereby the optically induced terahertz device i s configured to transmit or receive terahertz radiation.
Abstract:
A system for dispersion compensation in a terahertz system includes an optical fiber configured to transmit an optical pulse, a compensator optically coupled to the optical fiber, the compensator configured to compensate for a dispersion of the optical pulse caused as the optical pulse propagates through the optical fiber, and an optically induced terahertz device optically coupled to the compensator, whereby the optically induced terahertz device is configured to transmit or receive terahertz radiation.
Abstract:
A system for dispersion compensation in a terahertz system includes an optical fiber configured to transmit an optical pulse, a compensator optically coupled to the optical fiber, the compensator configured to compensate for a dispersion of the optical pulse caused as the optical pulse propagates through the optical fiber, and an optically induced terahertz device optically coupled to the compensator, whereby the optically induced terahertz device is configured to transmit or receive terahertz radiation.
Abstract:
A system for dispersion compensation in a terahertz system includes an optical fiber configured to transmit an optical pulse, a compensator optically coupled to the optical fiber, the compensator configured to compensate for a dispersion of the optical pulse caused as the optical pulse propagates through the optical fiber, and an optically induced terahertz device optically coupled to the compensator, whereby the optically induced terahertz device is configured to transmit or receive terahertz radiation.
Abstract:
A system for dispersion compensation in a terahertz system includes an optical fiber configured to transmit an optical pulse, a compensator optically coupled to the optical fiber, the compensator configured to compensate for a dispersion of the optical pulse caused as the optical pulse propagates through the optical fiber, and an optically induced terahertz device optically coupled to the compensator, whereby the optically induced terahertz device is configured to transmit or receive terahertz radiation.