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通过双模激光二极管和等离子体光混频器产生可调太赫兹波。

Tunable terahertz wave generation through a bimodal laser diode and plasmonic photomixer.

作者信息

Yang S-H, Watts R, Li X, Wang N, Cojocaru V, O'Gorman J, Barry L P, Jarrahi M

出版信息

Opt Express. 2015 Nov 30;23(24):31206-15. doi: 10.1364/OE.23.031206.

Abstract

We demonstrate a compact, robust, and stable terahertz source based on a novel two section digital distributed feedback laser diode and plasmonic photomixer. Terahertz wave generation is achieved through difference frequency generation by pumping the plasmonic photomixer with two output optical beams of the two section digital distributed feedback laser diode. The laser is designed to offer an adjustable terahertz frequency difference between the emitted wavelengths by varying the applied currents to the laser sections. The plasmonic photomixer is comprised of an ultrafast photoconductor with plasmonic contact electrodes integrated with a logarithmic spiral antenna. We demonstrate terahertz wave generation with 0.15-3 THz frequency tunability, 2 MHz linewidth, and less than 5 MHz frequency stability over 1 minute, at useful power levels for practical imaging and sensing applications.

摘要

我们展示了一种基于新型两段式数字分布反馈激光二极管和等离子体光混频器的紧凑、坚固且稳定的太赫兹源。通过用两段式数字分布反馈激光二极管的两束输出光泵浦等离子体光混频器,利用差频产生实现太赫兹波的产生。该激光器旨在通过改变施加到激光段的电流,在发射波长之间提供可调的太赫兹频率差。等离子体光混频器由一个超快光电导体组成,该光电导体带有与对数螺旋天线集成的等离子体接触电极。我们展示了在0.15 - 3太赫兹频率可调范围内、线宽为2兆赫兹且在1分钟内频率稳定性小于5兆赫兹的太赫兹波产生,其功率水平对实际成像和传感应用很有用。

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