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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Microwave oscillators incorporating high performance distributed Bragg reflector microwave resonators
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Microwave oscillators incorporating high performance distributed Bragg reflector microwave resonators

机译:包含高性能分布式布拉格反射器微波谐振器的微波振荡器

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We previously demonstrated a new resonator device structure that achieves Q-factors well above those currently realisable. The new structure consists of a microwave cavity, where the enclosure walls consist of distributed Bragg reflectors (DBRs) in three dimensions, made of low-loss sapphire. Theoretical analysis has demonstrated that the resonator's performance is critically dependent upon accurate alignment of the DBR components, thereby maintaining the desired symmetry of the resonant structure. Breaking of the symmetry causes mixing of the high performance Bragg reflected mode with low-Q hybrid cavity modes. The fabrication tolerances required to achieve the expected resonator performance are met with a precise but simple alignment tool. A pair of these resonators have been built at 9.0 GHz, and have demonstrated unloaded Qs in excess of 700,000 at room temperature. These resonators are incorporated into simple two-port feedback oscillator circuits. Phase noise measurements were performed on the two free-running oscillators.
机译:先前,我们演示了一种新的谐振器结构,其结构的Q因子远高于目前可实现的Q因子。新结构包括一个微波腔,外壳壁由三维分布的低损耗蓝宝石制成的分布式布拉格反射器(DBR)组成。理论分析表明,谐振器的性能主要取决于DBR组件的精确对准,从而保持谐振器结构所需的对称性。对称性的破坏导致高性能布拉格反射模式与低Q混合腔模式的混合。用精确但简单的对准工具即可达到预期的谐振器性能所需的制造公差。这些谐振器中有一对是在9.0 GHz频率下构建的,在室温下的空载Qs超过700,000。这些谐振器被合并到简单的两端口反馈振荡器电路中。在两个自由运行的振荡器上进行了相位噪声测量。

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