Nguyen L T, Tsai C S
Appl Opt. 1977 May 1;16(5):1297-304. doi: 10.1364/AO.16.001297.
Efficient wideband guided-wave acoustooptic Bragg diffraction has been demonstrated using a phased surface acoustic wave array in Y-cut LiNbO(3) waveguides. The results of measurement made on the devices which employ the first-order acoustic beam steering from six-element phased-SAWs of relatively small total acoustic aperture, at the center frequency of 325 MHz, have shown that accurate tracking of the Bragg condition is achievable for a frequency band of more than 250 MHz. In one of the deflectors that employ a larger total acoustic aperture, only 68 mW of electric drive power or 3.5 mW of acoustic power was required to diffract 50% of the light over a bandwidth of 112 MHz. This bandwidth is a nearly sixfold increase over that of the deflector that employs a single SAW of identical aperture. The quality of both deflected and undeflected light beams was very good.
利用Y切铌酸锂(LiNbO₃)波导中的相控表面声波阵列,已实现了高效宽带导波声光布拉格衍射。在中心频率为325 MHz时,对采用总声孔径相对较小的六元相控表面声波进行一阶声束控制的器件进行测量的结果表明,在超过250 MHz的频带内,可实现对布拉格条件的精确跟踪。在其中一个采用较大总声孔径的偏转器中,在112 MHz的带宽上,仅需68 mW的电驱动功率或3.5 mW的声功率就能使50%的光发生衍射。该带宽比采用相同孔径单个表面声波的偏转器的带宽增加了近六倍。偏转光束和未偏转光束的质量都非常好。