Lee Dong-Joon, Whitaker John F
Department of Electrical Engineering and Computer Science, Center for Ultrafast Optical Science, University of Michigan, Ann Arbor, Michigan 48109-2099, USA.
Opt Express. 2008 Sep 15;16(19):14771-9. doi: 10.1364/oe.16.014771.
We demonstrate that harmonic sidebands of an electro-optic modulator's driving frequency can be used as the local oscillator in a photonic down-mixing process in order to significantly enhance the bandwidth of near-field, electro-optic, microwave measurements. The creation of second- and third-order-harmonic modulation sidebands on a laser-diode output are described, with heterodyne down-conversion of microwave signals taking place within an electro-optic sensor crystal. The measurement bandwidth of an electro-optic microwave probe can thus be enhanced by as much as a factor of three with respect to the use of conventional, fundamental-harmonic sidebands. Carrier-sideband analysis from the measured optical spectrum indicates that millimeter-wave-frequency local-oscillator sidebands can be created using a Ku-band electro-optic modulator and that the electro-optic-signal-modulation depth can be enhanced by suppressing the light-beam carrier component. Transverse near-field distributions from high frequency patch antennas are extracted using both second- and third-order-harmonic sidebands.
我们证明,电光调制器驱动频率的谐波边带可在光子下混频过程中用作本地振荡器,以显著提高近场电光微波测量的带宽。描述了在激光二极管输出上产生二阶和三阶谐波调制边带的过程,其中微波信号的外差下变频发生在电光传感器晶体内部。因此,相对于使用传统的基波边带,电光微波探头的测量带宽可提高多达三倍。从测量光谱进行的载波边带分析表明,使用Ku波段电光调制器可以产生毫米波频率的本地振荡器边带,并且通过抑制光束载波分量可以提高电光信号调制深度。利用二阶和三阶谐波边带提取高频贴片天线的横向近场分布。