论文标题
基于高Q微泡谐振器的超阈值绿色荧光蛋白激光器
Ultralow-threshold green fluorescent protein laser based on high Q microbubble resonators
论文作者
论文摘要
生物激光器引起了广泛的关注,因为它们的潜在医疗应用前景,尤其是低阈值生物激光器,可用于超敏感生物检测,同时确保其发光增益培养基不会受到高能泵光的损害。通过将低浓度绿色荧光蛋白(GFP)溶液与高Q窃窃库模式微气泡谐振器耦合,我们设法制造了一个微型GFP激光器,其超级激光阈值为500 nj/mm^2。用于激发GFP的能量可以减少至380 FJ,比已知的最低激发能量GFP激光低两个数量级。该生物激光器中光腔的Q值为5.3 x 10^7,目前GFP激光器中最高。我们进一步证实了GFP激光器的工作特性的长期稳定性,并发现其光学特性至少可以维持23天。最后,我们测量了不同浓度的荧光蛋白对激光阈值的影响。数据表明,该生物激光可用于高度敏感的GFP浓度。
Biological lasers have attracted vast attention because of their potential medical application prospects, especially the low threshold biological laser, which can be used for ultrasensitive biological detection while ensuring that its luminous gain medium is not damaged by the high-energy pump light. By coupling the low concentration green fluorescent protein (GFP) solution with a high Q whispering gallery mode microbubble resonator, we managed to fabricate a miniature GFP laser with ultralow lasing threshold of 500 nJ/mm^2. The energy used to excite the GFP can be reduced to 380 fJ, two orders of magnitude lower than that of the lowest excitation energy GFP laser known. The Q value of the optical cavity in this biological laser is 5.3 x 10^7, the highest among GFP lasers at present. We further confirmed the long-term stability of the working characteristics of GFP laser for the first time and found that its optical characteristics can be maintained for at least 23 days. Finally, we measured the effects of different concentrations of fluorescent protein on the laser threshold. The data show that this biological laser can be used for a highly sensitive detection of GFP concentration.