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Efficient and ultra-narrow-linewidth integrated waveguide lasers in Al2O3:Yb and Al2O3:Er

机译:al2O3:Yb和al2O3:Er中的高效和超窄线宽集成波导激光器

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摘要

The ability to integrate Bragg grating structures with optical waveguides provides the opportunity to realize a variety of compact monolithic optical devices, such as distributed feedback (DFB) lasers, and distributed Bragg reflector (DBR) lasers. In this work, we report passive DBR cavities with record-high Q-factor, laser operation of Yb3+-doped DBR cavities with record-high slope efficiency, and laser operation of Er3+-doped DFB cavities with ultra-narrow linewidth. Undoped, Yb3+-doped, and Er3+-doped Al2O3 layers were deposited on thermally oxidized silicon wafers by reactive co-sputtering, and microstructured channel waveguides were fabricated by standard photolithography and subsequent chlorine-based reactive ion etching. After depositing a SiO2 upper cladding by plasma-enhanced chemical vapor deposition, Bragg gratings were patterned into a photoresist by laser inteference lithography and etched into the waveguide cladding. Since the grating is located in the cladding, the spatial overlap between the guided mode and the grating is only ~0.15%. Transmission measurement performed on passive uniform Bragg gratings resulted in high reflectivities, exceeding 99%. DBR cavities formed by two such Bragg gratings generate a resonance within the reflection band, resulting in a record-high Q-factor of 1.02x10e6. Applying such distributed Bragg gratings to Al2O3:Yb3+ channel waveguides produces highly efficient laser emission. The DBR cavity was formed by two 3.75-mm-long integrated Bragg reflectors on either side of a 2.5-mm-long grating-free waveguide region, to form a total DBR cavity length of 1 cm. The device was pumped with a 976-nm laser diode. Laser operation was demonstrated at a wavelength of 1021.2 nm, with output powers of up to 47 mW and a launched pump power threshold of 10 mW, resulting in a slope efficiency of 67%. Also a distributed feedback channel waveguide laser was demonstrated. The diode-pumped Al2O3:Er3+ continuous-wave laser had a threshold of 2.2 mW absorbed pump power and a maximum output power of more than 3 mW, with a slope efficiency of 41.3% versus absorbed pump power. Single-longitudinal-mode and single-polarization operation was achieved with an emission linewidth of 1.70 ± 0.58 kHz, corresponding to a Q factor of 1.14×10e11, which was centered at a wavelength of 1545.2 nm.
机译:将布拉格光栅结构与光波导集成在一起的能力为实现各种紧凑的单片光学设备提供了机会,例如分布式反馈(DFB)激光器和分布式布拉格反射器(DBR)激光器。在这项工作中,我们报告了具有创纪录的高Q因子的无源DBR腔,具有创纪录的高斜率效率的Yb3 +掺杂的DBR腔的激光操作以及具有超窄线宽的Er3 +掺杂的DFB腔的激光操作。通过反应性共溅射将未掺杂,Yb3 +掺杂和Er3 +掺杂的Al2O3层沉积在热氧化的硅晶片上,并通过标准光刻和随后的基于氯的反应性离子刻蚀制造微结构化的沟道波导。通过等离子增强化学气相沉积法沉积SiO2上覆层后,通过激光干涉光刻将布拉格光栅图案化为光致抗蚀剂,并蚀刻到波导覆层中。由于光栅位于包层中,因此导模与光栅之间的空间重叠仅为〜0.15%。在无源均匀布拉格光栅上进行的透射测量获得了高反射率,超过99%。由两个这样的布拉格光栅形成的DBR腔在反射带内产生共振,从而导致创纪录的1.02x10e6的Q因子。将这种分布式布拉格光栅应用于Al2O3:Yb3 +通道波导可产生高效的激光发射。 DBR腔是由两个2.55长的无光栅波导区域两侧的两个3.75 mm长的集成布拉格反射器形成的,形成的DBR腔的总长度为1 cm。该设备用976 nm激光二极管泵浦。激光操作的波长为1021.2 nm,输出功率高达47 mW,发射泵浦功率阈值为10 mW,斜率效率为67%。还展示了分布式反馈通道波导激光器。二极管泵浦的Al2O3:Er3 +连续波激光器的阈值是吸收泵浦功率2.2 mW,最大输出功率超过3 mW,相对于吸收泵浦功率的斜率效率为41.3%。实现了单纵模和单极化操作,发射线宽为1.70±0.58 kHz,对应于Q因子1.14×10e11,其中心波长为1545.2 nm。

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