Terahertz (THz) meta-devices are considered to be a promising framework for constructing integrated photonic circuitry, which is significant for processing the upsurge of data brought about by next-generation telecommunications. However, present active metasurfaces are typically restricted by a single external driving field, a single modulated frequency, fixed switching speed, and deficiency in logical operation functions which prevents devices from further practical applications. Here, to overcome these limitations, we propose a hybrid THz metasurface consisting of vanadium dioxide (VO2) and germanium (Ge) that enables electrical and optical tuning methods individually or simultaneously and theoretically investigate its performance. Each o...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
Driven by the continuous demand for system integration and device miniaturization, integrating multi...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceDespite a high application potential, the use of terahertz (THz) frequencies f...
International audienceDespite a high application potential, the use of terahertz (THz) frequencies f...
Multi-dimensional multiplexing based on the broadband metasurface is a promising candidate for the n...
International audienceDespite a high application potential, the use of terahertz (THz) frequencies f...
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
Driven by the continuous demand for system integration and device miniaturization, integrating multi...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceBroadband modulation of terahertz (THz) light is experimentally realized throu...
International audienceDespite a high application potential, the use of terahertz (THz) frequencies f...
International audienceDespite a high application potential, the use of terahertz (THz) frequencies f...
Multi-dimensional multiplexing based on the broadband metasurface is a promising candidate for the n...
International audienceDespite a high application potential, the use of terahertz (THz) frequencies f...
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...
International audienceWe designed and characterized a tunable metamaterial in the terahertz frequenc...