在GaN/蓝宝石衬底上具有钛酸钡锶的可切换和可调谐谐振器

T. Kalkur, Milad Hmeda, A. Mansour, P. Alpay, Nick Sbockey, G. Tompa
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引用次数: 0

摘要

使用金属有机溶液沉积(MOSD)技术的固体安装可调谐钡锶GaN/蓝宝石衬底。利用自旋沉积技术,在由二氧化硅和氧化钽交替层组成的氮化镓/蓝宝石衬底上首次形成了声学布拉格反射器。下电极和上电极采用溅射镀铂制备。通过施加8 V的电压,谐振器的谐振频率可从5.17 GHz调谐到5.20 GHz,可调性约为0.6%。发现谐振器的质量因数取决于施加的电压,在施加8 V的偏置电压下观察到的最大质量因数为216。谐振器的有效机电耦合系数(kt2)在8 V时为13.1%。
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Switchable and tunable resonators with barium strontium titanate on GaN/Sapphire substrates
A solidly mounted tunable barium strontium GaN/Sapphire substrate using a metalorganic solution deposition (MOSD) technique. An acoustic Bragg reflector was first formed on the GaN/sapphire substrate consisting of alternating layers of silicon dioxide and tantalum oxide deposited using a-spin on technique. Lower and upper electrodes were fabricated using sputter deposited platinum. The resonant frequency of the resonator could be tuned from 5.17 GHz to 5.20 GHz by applying a voltage of 8 V, resulting in tunability of about 0.6%. The quality factor of the resonator was found to depend on the applied voltage, with a maximum quality factor of 216 observed for an applied bias voltage of 8 V. The effective electromechanical coupling coefficient (kt2) of the resonator was found to be 13.1% at 8 V.
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