Tunable Brillouin and Raman microlasers using hybrid microbottle resonators

Tunable Brillouin and Raman microlasers using hybrid microbottle resonators
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使用混合微瓶谐振器的可调谐布里渊和拉曼微型激光器

DOI:
10.1515/nanoph-2019-0070
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发表时间:
2019-04
期刊:
影响因子:
7.5
通讯作者:
Zhang Xinliang
Zhang Xinliang
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
Zhu Song;Xiao Bowen;Jiang Bo;Shi Lei;Zhang Xinliang

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摘要利用超高质量因子(Q)混合微瓶谐振腔实现了可调谐布里渊激光器和可调谐拉曼激光器。基于微谐振腔的微腔布里渊和拉曼激光器具有低阈值、窄线宽、激光波长区域灵活等独特优势,具有广泛的应用前景。在许多情况下,布里渊和拉曼微谐振腔激光器的有效调谐是可取的。然而,相应的激光波长可调谐性鲜有报道。在这项工作中,我们基于所提出的Q因子大于108的混合微瓶谐振器实现了超低阈值布里渊和拉曼激光器。同时,通过混合微瓶谐振腔的轴向输入控制光,实现了布里渊激光波长调谐范围为2.68 nm,拉曼激光波长调谐范围为2.32 nm,分别比以往报道的波长调谐范围大了一个数量级和近一个数量级。这种可调谐微激光器可以在光源、微波光子学和光学传感方面找到重要的应用。
Abstract We realized a tunable Brillouin laser and a tunable Raman laser by using ultrahigh-quality-factor (Q) hybrid microbottle resonators. The whispering-gallery-mode microresonator-based Brillouin and Raman lasers possess unique advantages (e.g. low threshold, narrow line width, and flexible lasing wavelength region) and various potential applications. Efficient tuning of the Brillouin and Raman microresonator lasers is desirable in many cases. However, the corresponding lasing wavelength tunability is rarely reported. In this work, we realized the ultralow-threshold Brillouin and Raman lasers based on the proposed hybrid microbottle resonators with Q factors over 108. Meanwhile, by feeding the control light through the axial direction of the hybrid microbottle resonators, a Brillouin lasing wavelength tuning range of 2.68 nm and a Raman lasing wavelength tuning range of 2.32 nm are realized, which are one order of magnitude and almost once larger than those reported in the previous works, respectively. Such tunable microlasers could find significant applications in light sources, microwave photonics, and optical sensing.
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