基于精确形成的染料掺杂微球腔的可调谐微激光器

IF 1.5 2区 物理与天体物理 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
B. Mohammadfam, H. Veladi, R. Yadipour, H. Khoshsima
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引用次数: 1

摘要

摘要背景:微谐振腔激光器的优点是制造方法简单、成本低、微谐振腔因数高,这使得所制造的激光器具有低阈值电流。然而,缺乏具有精确尺寸和间距的可调制造方法是一个巨大的挑战。目的:基于一种依赖于注射和表面张力效应的微球制造方法,可以同时展示具有精确间距和尺寸的空腔阵列,其中空腔的尺寸可广泛调节。方法:使用无掩模光刻装置,制作基底和尖端直径分别为250 μm和60μm的柱,用于演示根据所施加的泵压力可调节尺寸的微球。将罗丹明B溶于甘油组成的微腔通过直径为70 μm的喷嘴注入聚二甲基硅氧烷载体中。结果:对于微球直径为~ 350 μm的激光器,获得了~ 4 μ j / mm2的激光阈值。还观察到由于染料浓度的增加而产生的红移。结论:采用该方法制备微谐振腔激光器所需的精密微球是可行的,可进一步推广使用不同的活性材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tunable microlaser based on precisely formed dye-doped microsphere cavity
Abstract. Background: The benefits of microresonator lasers include easy and low-cost fabrication methods and high-quality factor of microresonators, which results in low threshold current of the fabricated laser. However, the lack of tunable fabrication methods with precise size and spacing is a great challenge. Aim: Based on a microsphere fabrication method that relies on injection and surface tension effects, simultaneous demonstration of an array of cavities with precise spacing and sizes is possible where the size of cavities is widely tunable. Approach: Using a maskless lithography setup, pillars with base and tip diameters of 250 and 60μm are fabricated, which are used for demonstration of microspheres with tunable size, depending on the applied pump pressure. Microcavities composed of Rhodamine B dissolved in glycerol are injected into the polydimethylsiloxane carrier through a nozzle with a diameter of 70  μm. Results: An ∼4-μJ  /  mm2 lasing threshold has been obtained for a laser with a microsphere diameter of ∼350  μm. A redshift originated from the increment of dye concentration has also been observed. Conclusions: Fabrication of precise microspheres for a microresonator laser is feasible using the introduced method, which can be further generalized using different active materials.
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来源期刊
CiteScore
3.40
自引率
30.40%
发文量
0
审稿时长
6-12 weeks
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