Rivera José A, Eden J Gary
Opt Express. 2016 May 16;24(10):10858-68. doi: 10.1364/OE.24.010858.
A detailed characterization of the flavin mononucleotide (FMN) biomolecular laser, optically pumped in a stable resonator, is reported here. Photoexcitation of the molecule at 355 nm results in lasing over the ~566.5-573.5 nm spectral region, and the threshold pump energy density is measured to be 110 ± 10 µJ/mm for a 10 mM FMN/water solution. Over twenty longitudinal modes are observed when the cavity length L and the energy pump fluence E are 375 µm and 300 µJ/mm, respectively. Partial substitution of glycerol for water as the solvent results in a factor of four reduction in the threshold pump energy fluence (to < 30 µJ/mm) and a quadrupling of the slope efficiency. This effect is attributed to the O - mediated photoconversion of FMN molecules in the triplet state to the singlet species. For pump intensities a factor of 2.5 above threshold, the laser pulse width is ~2 ns FWHM, and the output intensity decays exponentially with a photon lifetime of 1.7 ns. The addition of glycerol to a FMN/water solution also suppresses s-polarized emission (yielding P = 0.78 ± 0.08), presumably as a result of the inhibition of FMN rotational diffusion. The sensitivity of the spectral and optical properties of this and other biomolecular lasers to the chemical environment underscores the value of coherent emission as a biochemical or biomedical diagnostic tool, particularly insofar as molecule-molecule interactions are concerned.
本文报道了在稳定谐振腔中光泵浦的黄素单核苷酸(FMN)生物分子激光器的详细特性。在355nm处对该分子进行光激发会导致在约566.5 - 573.5nm光谱区域产生激光,对于10mM的FMN/水溶液,测得的阈值泵浦能量密度为110±10µJ/mm²。当腔长L和泵浦能量通量E分别为375µm和300µJ/mm²时,观察到超过二十个纵模。用甘油部分替代水作为溶剂会使阈值泵浦能量通量降低四倍(降至<30µJ/mm²),且斜率效率提高四倍。这种效应归因于O介导的处于三重态的FMN分子向单重态物种的光转化。对于高于阈值2.5倍的泵浦强度,激光脉冲宽度为~2ns半高宽,输出强度以1.7ns的光子寿命呈指数衰减。向FMN/水溶液中添加甘油还会抑制s偏振发射(P = 0.78±0.08),这可能是由于FMN旋转扩散受到抑制的结果。这种以及其他生物分子激光器的光谱和光学性质对化学环境的敏感性突出了相干发射作为生化或生物医学诊断工具的价值,特别是在涉及分子间相互作用方面。