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First shear horizontal mode plate wave in LiNbO3 showing 20 km/s phase velocity

机译:LiNbO 3 中的第一剪切水平模式板波显示出20 km / s的相速度

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Currently, cognitive radio using a white space of digital TV (DTV) channels is receiving a lot of attention. One of the key devices of a cognitive radio handset is a tunable filter capable of adjusting frequency and bandwidth (BW) throughout DTV band. The authors developed ultra-wideband resonators in a DTV band and ultra-wideband filters fully covering all DTV channels using 0th shear horizontal mode plate wave (SH) in a (0°, 120°, 0°) LiNbO plate. However, they are fabricated on a self-suspended ultra-thin LiNbO plate of only 0.5-0.6 μm in thickness, which is mechanically fragile and difficult to fabricate at high yield. A much higher phase velocity than that of SH is required to make the plate practically thicker. The objective of this study is to explore a different mode of plate wave showing much higher phase velocity and wide BW. By FEM simulation, it is clarified that a first SH mode (SH) plate wave propagating in two kinds of new proposed structures, which are different from suitable SH mode structures for wide BW, has higher velocity than 20,000 m/s and wide BW of 24%.
机译:当前,使用数字电视(DTV)频道空白的认知广播受到了广泛的关注。认知无线电手机的关键设备之一是可调滤波器,它能够在整个DTV频段上调节频率和带宽(BW)。作者开发了在(0°,120°,0°)LiNbO板中使用第0剪切水平模式板波(SH)在DTV频带中开发的超宽带谐振器和完全覆盖所有DTV频道的超宽带滤波器。但是,它们是在厚度仅为0.5-0.6μm的自悬浮超薄LiNbO板上制造的,机械上易碎且难以以高产量制造。要使板实际上更厚,需要比SH高得多的相速度。这项研究的目的是探索一种具有更高相速度和更大带宽的板波模式。通过有限元模拟,可以清楚地看出,以两种新的建议结构传播的第一SH模式(SH)板波,与适用于宽BW的合适SH模式结构不同,具有高于20,000 m / s的速度和宽BW的速度。 24%。

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