112/spl deg/-LiTaO/sub 3/ periodic waveguides

C. Hartmann, V. Plessky, S. Jen
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引用次数: 6

Abstract

The waveguide properties of periodic waveguide structures on 112-LiTaO/sub 3/ are studied experimentally and theoretically at frequencies close to the Bragg stopband. On admittance curves of long transducer type test structures it is seen that additional attenuation appears at both the high and low frequency sides of the stopband in that the resonances at these frequencies are suppressed. In addition, strong spurious resonances are seen in the lower half of the stopband region. Direct laser probe measurements have shown that the amplitude distribution in the transverse direction across the waveguide changes significantly versus frequency. Propagation ranges from (a) weak single mode guiding at low frequency to (b) strong multi-mode guiding near the lower stopband frequency then (c) a region without any guided modes and strong side radiation near the upper stopband frequency and (d) a return to weak single mode guiding at frequencies well above the stopband. The theoretical explanation of the observed effect is proposed based on Haus and Wang (1978) and Schwelb (178) models. This effect "side-radiation" from waveguide structures in devices at the frequencies corresponding to the upper edge of the stopband can give rise to spurious responses due to acoustic coupling between different parts of the device.
112/声压度/-LiTaO/sub / 3/周期波导
在接近布拉格阻带的频率下,对112-LiTaO/sub - 3/上的周期波导结构的波导特性进行了实验和理论研究。在长换能器型试验结构的导纳曲线上可以看出,阻带的高频和低频两侧都出现了额外的衰减,因为这些频率的共振被抑制了。此外,在阻带区域的下半部分可以看到强烈的杂散共振。直接激光探头测量表明,在横向方向上的振幅分布在整个波导随频率显著变化。传播范围从(a)低频弱单模引导到(b)靠近较低阻带频率的强多模引导,然后(c)靠近较高阻带频率的没有任何引导模式和强侧辐射的区域,以及(d)返回到远高于阻带频率的弱单模引导。对观测到的效应的理论解释是基于Haus和Wang(1978)和Schwelb(178)模型提出的。器件中波导结构在对应于阻带上边缘的频率上的这种效应“侧辐射”可能由于器件不同部分之间的声学耦合而产生杂散响应。
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