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Ultrafast nonlinear optical properties of thin-solid DNA film and their application as a saturable absorber in femtosecond mode-locked fiber laser

机译:固体薄膜的超快非线性光学特性及其在飞秒锁模光纤激光器中作为可饱和吸收体的应用

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摘要

A new extraordinary application of deoxyribonucleic acid (DNA) thin-solid-film was experimentally explored in the field of ultrafast nonlinear photonics. Optical transmission was investigated in both linear and nonlinear regimes for two types of DNA thin-solid-films made from DNA in aqueous solution and DNA-cetyltrimethylammonium chloride (CTMA) in an organic solvent. Z-scan measurements revealed a high third-order nonlinearity with n2 exceeding 10−9 at a wavelength of 1570 nm, for a nonlinarity about five orders of magnitude larger than that of silica. We also demonstrated ultrafast saturable absorption (SA) with a modulation depth of 0.43%. DNA thin solid films were successfully deposited on a side-polished optical fiber, providing an efficient evanescent wave interaction. We built an organic-inorganic hybrid all-fiber ring laser using DNA film as an ultrafast SA and using Erbium-doped fiber as an efficient optical gain medium. Stable transform-limited femtosecond soliton pulses were generated with full width half maxima of 417 fs for DNA and 323 fs for DNA-CTMA thin-solid-film SAs. The average output power was 4.20 mW for DNA and 5.46 mW for DNA-CTMA. Detailed conditions for DNA solid film preparation, dispersion control in the laser cavity and subsequent characteristics of soliton pulses are discussed, to confirm unique nonlinear optical applications of DNA thin-solid-film.
机译:在超快非线性光子学领域,实验研究了脱氧核糖核酸(DNA)薄膜的新的非凡应用。研究了由水溶液中的DNA和有机溶剂中的DNA-鲸蜡基三甲基氯化铵(CTMA)制成的两种类型的DNA薄膜的线性和非线性光学传输。 Z扫描测量显示出高度的三阶非线性,在1570 nm的波长下n2超过10 −9 ,其非线性度比二氧化硅大约5个数量级。我们还展示了调制深度为0.43%的超快饱和吸收(SA)。 DNA薄膜固体膜成功沉积在侧面抛光的光纤上,提供了有效的e逝波相互作用。我们使用DNA薄膜作为超快SA,并使用掺Er光纤作为有效的光学增益介质,构建了有机-无机混合全光纤环形激光器。产生了稳定的,受转换限制的飞秒孤子脉冲,其中DNA的全宽半最大值为417 fs,DNA-CTMA薄膜SA的全宽半最大值为323 fs。 DNA的平均输出功率为4.20 mW,DNA-CTMA的平均输出功率为5.46 mW。讨论了DNA固体膜制备的详细条件,激光腔中的色散控制以及孤子脉冲的后续特性,以确认DNA薄膜的独特非线性光学应用。

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