论文标题

具有低相噪声的可调磁声振荡器

A tunable magneto-acoustic oscillator with low phase noise

论文作者

Litvinenko, A., Khymyn, R., Tyberkevych, V., Tikhonov, V., Slavin, A., Nikitov, S.

论文摘要

在平行板的直板双层双层的底部开发了频率低相位噪声磁磁谐振器,该双层由Yttrium-Iron Garnet(YIG)层组成,该层生长在盖甘尼木油石榴石(GGG)的基板上。当YIG/GGG样品形成理想的平行板时,它支持一系列沿板厚度的高质量因素模式。由于YIG层的磁截图,当模式的频率匹配时,YIG层的铁磁共振(FMR)模式可以与YIG/GGG结构的声学厚度模式强烈相互作用。 YIG层FMR频率选择了YIG/GGG双层中混合磁音声振荡的共振激发的特定声学厚度模式,可以通过外部偏置磁场的变化来调节。开发了一个基于FMR的共振前选择器的复合磁声振荡器,以确保对Barkhausen标准对单声模式振荡制度的满意度。开发的低相噪声复合磁磁振荡器可以从0.84 GHz调整为1 GHz,增量约为4.8 MHz(Yig/GGG平行板中相邻声学厚度模式之间的频率距离),并证明了-116 DBC/Hz的相位噪声在Offset频率为10 khz的相位噪声。

A frequency-tunable low phase noise magneto-acoustic resonator is developed on the base of a parallel-plate straight-edge bilayer consisting of a yttrium-iron garnet (YIG) layer grown on a substrate of a gallium-gadolinium garnet(GGG). When a YIG/GGG sample forms an ideal parallel plate, it supports a series of high-quality-factor acoustic modes standing along the plate thickness. Due to the magnetostriction of the YIG layer the ferromagnetic resonance (FMR) mode of the YIG layer can strongly interact with the acoustic thickness modes of the YIG/GGG structure, when the modes' frequencies match. A particular acoustic thickness mode used for the resonance excitations of the hybrid magneto-acoustic oscillations in a YIG/GGG bilayer is chosen by the YIG layer FMR frequency, which can be tuned by the variation of the external bias magnetic field. A composite magneto-acoustic oscillator, which includes an FMR-based resonance pre-selector, is developed to guarantee satisfaction of the Barkhausen criteria for a single-acoustic-mode oscillation regime. The developed low phase noise composite magneto-acoustic oscillator can be tuned from 0.84 GHz to 1 GHz with an increment of about 4.8 MHz (frequency distance between the adjacent acoustic thickness modes in a YIG/GGG parallel plate), and demonstrates the phase noise of -116 dBc/Hz at the offset frequency of 10 kHz.

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