In this work we introduce a new transmitter/receiver sensor antenna for THz applications, by exploiting piezoelectric Mo/AlN/Mo rings realised through micromachining techniques. This kind of sensor antenna takes advantages of the piezoelectric effect which allows to tune the ring diameter thus enabling the modulation of a THz signal. The theoretical and numerical modelling analyzes a single transmitter/receiver THz sensor system. The numerical finite element method (FEM) modelling provides the radiation pattern of the receiver ring at I THz, and the theoretical modelling analyses the modulation principle of the transmitter antenna. We prove the presence of piezoelectric resonances in a frequency range from 30 KHz to 1 GHz by measuring the scattering parameters of four rings arranged on the same chip.

Micromachining Mo/AlN/Mo Piezoelectric Ring Resonators

Massaro Alessandro;Passaseo Adriana
2009

Abstract

In this work we introduce a new transmitter/receiver sensor antenna for THz applications, by exploiting piezoelectric Mo/AlN/Mo rings realised through micromachining techniques. This kind of sensor antenna takes advantages of the piezoelectric effect which allows to tune the ring diameter thus enabling the modulation of a THz signal. The theoretical and numerical modelling analyzes a single transmitter/receiver THz sensor system. The numerical finite element method (FEM) modelling provides the radiation pattern of the receiver ring at I THz, and the theoretical modelling analyses the modulation principle of the transmitter antenna. We prove the presence of piezoelectric resonances in a frequency range from 30 KHz to 1 GHz by measuring the scattering parameters of four rings arranged on the same chip.
2009
978-1-4244-4748-0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/291738
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