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Electrically reconfigurable terahertz signal processing devices using liquid metal components.


ABSTRACT: Many applications of terahertz (THz) technology require the ability to actively manipulate a free space THz beam. Yet, although there have been many reports on the development of devices for THz signal processing, few of these include the possibility of electrical control of the functionality, and novel ideas are needed for active and reconfigurable THz devices. Here, we introduce a new approach, based on the integration of electrically actuated liquid metal components in THz waveguides. This versatile platform offers many possibilities for control of THz spectral content, wave fron"ts, polarization, and power flow. We demonstrate two illustrative examples: the first active power-splitting switch, and the first channel add-drop filter. We show that both of these devices can be used to electrically switch THz communication signals while preserving the information in a high bit-rate-modulated data stream.

SUBMITTER: Reichel KS 

PROVIDER: S-EPMC6180054 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Electrically reconfigurable terahertz signal processing devices using liquid metal components.

Reichel Kimberly S KS   Lozada-Smith Nicolas N   Joshipura Ishan D ID   Ma Jianjun J   Shrestha Rabi R   Mendis Rajind R   Dickey Michael D MD   Mittleman Daniel M DM  

Nature communications 20181010 1


Many applications of terahertz (THz) technology require the ability to actively manipulate a free space THz beam. Yet, although there have been many reports on the development of devices for THz signal processing, few of these include the possibility of electrical control of the functionality, and novel ideas are needed for active and reconfigurable THz devices. Here, we introduce a new approach, based on the integration of electrically actuated liquid metal components in THz waveguides. This ve  ...[more]

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