期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
制取生物表面活性剂的技术路线 被引量:1
1
作者 f.wagner 胡征宇 《日用化学工业译丛》 1989年第4期6-13,共8页
前言生物表面活性剂是由细菌、酵母和真菌等多种微生物产生的。基本上可分为五种主要类型: 1.糖脂 2.脂肽/脂蛋白 3.脂多糖 4.取代脂肪酸 5.磷脂最近Kosacic等综述了这些细胞外两亲代谢物的产生、性质及各种应用。生物表面活性剂的生物... 前言生物表面活性剂是由细菌、酵母和真菌等多种微生物产生的。基本上可分为五种主要类型: 1.糖脂 2.脂肽/脂蛋白 3.脂多糖 4.取代脂肪酸 5.磷脂最近Kosacic等综述了这些细胞外两亲代谢物的产生、性质及各种应用。生物表面活性剂的生物合成常涉及微生物在烃类或其他亲脂性底物上的生长。生物表面活性剂在烃代谢中的生理作用与亲脂底物和微生物细胞间的起始作用机理有关。除烃外,油脂、甘油或碳水化合物等非烃类也可作为微生物合成生物活性剂的碳底物。视所用的微生物种类,合成过程可以是生长相关或非生长相关的。 展开更多
关键词 生物 表面活性剂 微生物 糖脂
原文传递
Ultrahigh temporal contrast performance of the PHELIX petawatt facility 被引量:5
2
作者 V.Bagnoud f.wagner 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2016年第4期1-8,共8页
We report on the temporal contrast performance of the PHELIX facility in view of the requirements imposed by solidtarget interaction experiments. The requirement analysis for the nanosecond and picosecond temporal con... We report on the temporal contrast performance of the PHELIX facility in view of the requirements imposed by solidtarget interaction experiments. The requirement analysis for the nanosecond and picosecond temporal contrast is derived from empirical data and simple theoretical modeling, while the realization shows that using an ultrafast optical parametric amplifier and plasma mirrors enables meeting this specification. 展开更多
关键词 amplified spontaneous emission chirped-pulse amplification optical parametric amplification temporal contrast
原文传递
Accelerating ions with high-energy short laser pulses from submicrometer thick targets
3
作者 f.wagner C.Brabetz +6 位作者 O.Deppert M.Roth T.Stohlker An.Tauschwitz A.Tebartz B.Zielbauer V.Bagnoud 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2016年第4期1-8,共8页
Using the example of the PHELIX high-energy short pulse laser we discuss the technical preconditions to investigate ion acceleration with submicrometer thick targets. We show how the temporal contrast of this system w... Using the example of the PHELIX high-energy short pulse laser we discuss the technical preconditions to investigate ion acceleration with submicrometer thick targets. We show how the temporal contrast of this system was improved to prevent pre-ionization of such targets on the nanosecond timescale. Furthermore the influence of typical fluctuations or uncertainties of the on-target intensity on ion acceleration experiments is discussed. We report how these uncertainties were reduced by improving the assessment and control of the on-shot intensity and by optimizing the positioning of the target into the focal plane. Finally we report on experimental results showing maximum proton energies in excess of 85 MeV for ion acceleration via the target normal sheath acceleration mechanism using target thicknesses on the order of one micrometer. 展开更多
关键词 high-power laser technique laser-ion acceleration relativistic laser plasma interaction target normal sheath acceleration temporal contrast
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部