论文标题

使用集成的尼橡胶锂波导的片上自我引用

On-chip self-referencing using integrated lithium niobate waveguides

论文作者

Okawachi, Yoshitomo, Yu, Mengjie, Desiatov, Boris, Kim, Bok Young, Hansson, Tobias, Lončar, Marko, Gaeta, Alexander L.

论文摘要

通过自我引用的载体 - 内玻璃偏移频率$ f _ {\ textrm {ceo}} $的测量和稳定对于光学频率梳子的生成来说至关重要,它彻底改变了精确的频率计量,光谱学和光学时钟。在过去的十年中,芯片尺度平台的开发使超级局部生成的紧凑型集成波导。但是,对于适应不同泵波长的片上自我引用系统的迫切需要,需要低脉冲能量,并且不需要复杂的处理。在这里,我们演示了有效的载波 - eNVELOPE OFFSET频率$ f _ {\ textrm {ceo}} $稳定模型的激光器,仅在综合锂硝酸锂硅盐波导中进行自我引用,仅107 PJ脉冲能量。我们通过第二次谐波一代和随后的超级脑力发电量实现了$ f $ - $ 2F $的干涉仪,并在单个分散工程的波导中实现了稳定的性能,其稳定性能等于传统的外片模块。 $ f _ {\ textrm {ceo}} $ beatnote在70 nm的泵波长范围内测量。我们从理论上使用单个非线性包膜方程来研究我们的系统,并从二阶非线性和三阶非线性贡献中进行了贡献。我们的建模揭示了丰富的Ultrabroadband非线性动力学,并证实了最初的第二次谐波生成,其余的超级谐波产生与剩余泵相比,剩余的泵与剩余的泵产生了强大的$ f _ {\ textrm {ceo}} $信号,与传统的$ f $ -2F $ 2F $相比。我们的技术提供了一个高度简化的系统,该系统强劲,低成本且适应于精确测量,用于在研究实验室外使用。

The measurement and stabilization of the carrier-envelope offset frequency $f_{\textrm{CEO}}$ via self-referencing is paramount for optical frequency comb generation which has revolutionized precision frequency metrology, spectroscopy, and optical clocks. Over the past decade, the development of chip-scale platforms has enabled compact integrated waveguides for supercontinuum generation. However, there is a critical need for an on-chip self-referencing system that is adaptive to different pump wavelengths, requires low pulse energy, and does not require complicated processing. Here, we demonstrate efficient carrier-envelope offset frequency $f_{\textrm{CEO}}$ stabilization of a modelocked laser with only 107 pJ of pulse energy via self-referencing in an integrated lithium niobate waveguide. We realize an $f$-$2f$ interferometer through second-harmonic generation and subsequent supercontinuum generation in a single dispersion-engineered waveguide with a stabilization performance equivalent to a conventional off-chip module. The $f_{\textrm{CEO}}$ beatnote is measured over a pump wavelength range of 70 nm. We theoretically investigate our system using a single nonlinear envelope equation with contributions from both second- and third-order nonlinearities. Our modeling reveals rich ultrabroadband nonlinear dynamics and confirms that the initial second harmonic generation followed by supercontinuum generation with the remaining pump is responsible for the generation of a strong $f_{\textrm{CEO}}$ signal as compared to a traditional $f$-$2f$ interferometer. Our technology provides a highly-simplified system that is robust, low cost, and adaptable for precision metrology for use outside a research laboratory.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源