He Yang, Cheng Long, Wang Heming, Zhang Yu, Meade Roy, Vahala Kerry, Zhang Mian, Li Jiang
hQphotonics Inc., 2500 E Colorado Blvd Suite 330, Pasadena CA 91107, USA.
HyperLight Corporation, 1 Bow Street, Suite 420, Cambridge, MA 02138, USA.
Sci Adv. 2024 Aug 16;10(33):eado9570. doi: 10.1126/sciadv.ado9570. Epub 2024 Aug 14.
Optical frequency division based on bulk or fiber optics provides unprecedented spectral purity for microwave oscillators. To extend the applications of this approach, the challenges are to develop miniaturized oscillators without trading off phase noise performance. Here, we report a chip-scale high-performance photonic microwave oscillator based on integrated electro-optical frequency division. Dual distributed-feedback lasers are co-self-injection locked to a single silicon nitride spiral resonator to provide a record-high-stability, fully on-chip optical reference. An integrated electro-optical frequency comb based on a thin-film lithium niobate phase modulator chip is leveraged to perform optical-to-microwave frequency division. The resulting integrated photonic microwave oscillator achieves a record-low phase noise for chip-scale oscillators. The results represent a major advance in high-performance, integrated photonic microwave oscillators for applications including signal processing, radar, timing, and coherent communications.
基于体光学或光纤光学的光频分频为微波振荡器提供了前所未有的光谱纯度。为了扩展这种方法的应用,面临的挑战是开发小型化振荡器而不牺牲相位噪声性能。在此,我们报告了一种基于集成电光分频的芯片级高性能光子微波振荡器。双分布式反馈激光器被共同自注入锁定到单个氮化硅螺旋谐振器,以提供创纪录的高稳定性、全片上光学参考。基于薄膜铌酸锂相位调制器芯片的集成电光频率梳被用于执行光到微波的分频。由此产生的集成光子微波振荡器实现了芯片级振荡器创纪录的低相位噪声。这些结果代表了高性能集成光子微波振荡器在信号处理、雷达、定时和相干通信等应用方面的重大进展。