124 resultados para pokolenia X, Y, Z


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We report on room temperature laser actions of a novel thulium-doped crystal Tm center dot Lu2SiO5 (LSO) under diode pumping. An optical optical conversion efficiency of 12% and a slope efficiency of 21% were obtained with the maximum continuous wave (CW) output power of 0.67 W. The emission wavelengths of Tm LSO laser were centered at 2058.4 nm with bandwidth of similar to 13.6 nm.

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We report on the room-temperature continuous-wave (CW) operation of a Ho:YAlO3 laser that is resonantly end pumped at 1.94 mu m by a diode-pumped thulium-doped laser in the same host. Through the use of a 1 at % Ho3+-doped 20-mm-long YAlO3 crystal (b cut), the Ho:YAlO3 laser generated 1 W of linearly polarized (E//c) output at 2118 nm and 0.55 W of E//a output at 2128.5 nm for an incident pump power of 5 W, with an output coupler transmission of 14 and 3%, respectively. An optical-to-optical conversion efficiency of 20% and a slope efficiency of 33% were achieved at 2118 nm corresponding to an incident pump power.

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We reported on a diode end-pumped AO Q-switched Tm:YAP laser at 1937 nm. The average output power was 3.9 W, with a slope efficiency of 29.4% and optical-optical conversion efficiency of 21.6% at a 5-kHz repetition rate. The temperature dependency of the output power and the pulse width at different repetition rates were investigated in details.

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异叶苣苔属(Whytockia)隶属于苦苣苔科(Gesneriaceae)、尖舌苣苔族(Klugieae).70年代以来,该属作为Klugieae中最原始的类群才逐渐被人们所认识,并被认为是解决Klugieae系统发育问题的关键类群,但到目前为止,对该属变异式样及系统发育的认识仍然极其有限.鉴于上述原因,本文结合蜡叶标本和大量的野外观察和采集,从形态学、维管束的结构和分化,形态发生和细胞学等方面,进行异叶苣苔属的系统学和进化研究,并兼论尖舌苣苔族的系统发育. 1.通过对异叶苣苔属大量性状的仔细观察和比较,本文选择了34个性状,并分析了他们的变异式样及其形成原因,为进一步的系统学研究提供依据. 2.地上茎的形态发生研究揭示出异叶苣苔属植物的顶芽完全受到抑制,位于小型叶腋的侧芽萌发,从而替代顶芽生长,地上茎的不分枝是位于大型叶腋的腋芽受到抑制所致,该研究纠正了前人的观察错误. 3.花序及花的形态发生过程表明,异叶苣苔属的花序呈对花从花序轴内侧二列式连续发生,没有任何分枝和附属物.花各部分的发生顺序基本上呈向心式,但在花冠和雄蕊原基之间则为离心式发生.花萼和花冠原基的发生及发育顺序均呈下降式,从而使花萼和花冠在芽中呈下降覆瓦状排列,退化雄蕊是由发育停滞所致.雌蕊的两个心皮在形态发生过程中由离生到合生,该属具中轴胎座的二室子房起源于两个离生心皮的近轴面内卷式愈合,柱头从离生到合生决定于个体发育中愈合部向上推进的程度. 4.为了澄清性状演化极性这一关键问题、本文作了花部器官解剖以及心皮维管束结构及分化过程的研究,结果表明,该属花梗和花萼中均具有分泌道和雄蕊束从中柱独立分出,同独叶苣苔属(Monophyllaea)十分相似:花盘低且薄并且没有维管束,以及子房壁维管束具有不同来源而区别于尖舌苣苔族(Klugieae)中的其它类群.异叶苣苔属的心皮结合程度和胎座形态可分为三种类型,即A型:心皮结合部的中轴区膨大,但四个瓣片的上部分离、B型:除中轴区膨大外,四个瓣片也成对愈合,胎座呈锚形、C型:中轴区不膨大,四个瓣片完全分离,子房上部一室.前者保留了较多的叶性,可能是该属乃至尖舌苣苔族中最原始心皮及胎座形态.后二者代表着两个相反的演化趋势. 5.本文首次报道了异叶苣苔属的染色体数目和核型,染色体数目均为2n=18,x=9.核型分别是2A或3A.核型的演化趋势,即从对称到不对称和随体的丢失同外部形态的变异密切相关。 6.深入地比较和分析了异叶苣苔属和其他类群的关系以及性状的演化趋势,并运用分支分析方法,重建属的系统发育. 7.生态、地理分布和演化的研究表明:异叶苣苔属的多样化中心分别是云南东南部和滇、贵、川交界区域,起源于第三纪或更早期的古热带湿润性森林植物区系,起源地可能是两个现代多样化中心所连接的整个区域,即:滇东南至滇贵川交界区域. 8.本文对异叶苣苔属进行全面的分类学修订,包括7个种,其中一个新种,新组合1个种和一个变种、根据该属的系统发育式样,在属下新设两个组.系统排列如下: 异叶苣苔属Whytockia W. W. Smith 组1:异叶苣苔组Sect. Whytockia Y. Z. Wang sect. nov. 1.河口异叶苣苔W. hekouensis Y. Z. Wang 2.毕节异叶苣苔W. bijieensis Y. Z. Wang, sp. nov. 3.异叶苣苔W. chiritiflora (Oliv.) W.W. Smith 4.峨眉异叶苣苔W. wilsonii (A. Weber) Y. Z. Wang, stat. nov. 5.紫红异叶苣苔W. purpurascens Y. Z. Wang 组2:台湾异叶苣苔组Sect. Synstigma Y. Z. Wang, sect. nov. 6.白花异叶苣苔W. tsiangiana (Hand.-Mazz) A. Weber 7.台湾异叶苣苔W. sasakii (Hayata)B.L.Burtt. 9.在异叶苣苔属系统学和进化研究的基础上,结合前人工作,本文进一步探讨尖舌苣苔族的系统发育.大量的证据充分显示出异叶苣苔属和圆果苣苔属分别是Klugieae最原始的类群,该族中的尖舌苣苔属(Rhynchoglossum),盾座苣苔属(Epithema)和独叶苣苔属(Mono phyllaea),可能是从Whytockia植物的早期类群直接演化而来,十字苣苔属(Stauranthera)和Loxonia也可能直接或间接来自Gyrogyne植物的早期类群.尖舌苣苔族植物可能起源于亚洲大陆或更准确地说,中国西南部地区,在随后的演化过程中,经过分化、迁移,逐渐形成广布于南亚、东南亚及太平洋岛屿至西非、中美洲的现代地理分布式样。

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本论文对葛属(Pueraria DC.)进行了形态学、解剖学及植物地理学研究,重点分析了小叶、托叶、花序及花的形态变异规律。首次发现葛属生长习性和种皮纹饰特征在组的划分上具有重要的分类学意义,支持前人运用托叶着生方式、花序类型及每节簇生花的数目等特征划分组的观点。首次在光学显微镜下对葛属植物14种1变种叶表皮性状做了较为全面、深入的观察,发现葛属叶表皮细胞的形状、垂周壁的式样以及气孔大小有一定分类学意义,为葛属的分类修订提供了新资料。首次应用电子扫描显微镜观察了葛属10种1变种和2个外类群广西土黄芪Nogra guangxiensis C. F. Wei和琼豆Teyleria koordersii (Backer ex Koord.-Schum.) Backer的种皮纹饰特征,发现葛属的种皮纹饰有网纹型、断棱型、复网纹型和锐棱型等4种类型,他们与托叶的着生方式具有一定的关联性。托叶背着的类群为网纹型,其中采自中国和越南不同居群的山野葛Pueraria montana (Lour.) Merr.种皮次级纹饰有差别,这显示山野葛分化比较活跃。托叶基着的三裂叶野葛P. phaseoloides (Roxb.) Benth.、大花三裂叶野葛P. phaseoloides (Roxb.) Benth. var. javanica (Benth.) Baker、苦葛P. peduncularis (Graham ex Benth.) Benth.以及云南野葛P. yunnanensis Franch.的种皮纹饰为断棱形,小花野葛P. stricta Kurz种皮纹饰为复网纹型,喜玛拉雅葛藤P. wallichii DC.种皮纹饰为锐棱型。依据种皮纹饰推断,喜玛拉雅葛藤最原始,黄毛葛藤P. calycina Franch.最进化,与形态学特征演化方向相吻合。广西土黄芪种皮纹饰为网纹型,琼豆种皮纹饰为复网纹型,表明它们与葛属亲缘关系较近。这与形态学和分子证据相吻合。本文首次运用广义线形模型(GLM)结合地理信息系统(GIS)对葛属现有地理分布、潜在分布及50年后潜在分布进行了分析。所预测的潜在分布范围与观察到的地理分布范围一致,说明对特化的气候忍耐性是限制葛属物种地理分布的主要因素。温度、降水和海拔高度对葛属地理分布限制作用比较大。未来潜在分布预测显示葛属有向南、北扩散的趋势。 作者在研究了四千余份腊叶标本及野外形态考察的基础上,结合叶表皮及种皮纹饰资料,确认葛属分为3组,共19种3变种。其中,对Sect. Breviramulae Maesen ex Z. F. Le & X. Y. Zhu进行了合格发表,运用形态学、解剖学及种皮纹饰资料恢复了云南野葛种的地位,并为其指定了后选模式,P. pulcherrima (Koord.-Schum.) Merr. ex Koord.-Schum.正确的学名为P. sericans Schum.,对4个名称进行了归并。本文还给出了组和种的检索表、葛属各个种的形态描述、地理分布图及模式标本照片。

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The phylogeny of Oedogoniales was investigated by using nuclear 18S rDNA sequences. Results showed that the genus Oedocladium, as a separated clade, was clustered within the clade of Oedogonium; whereas the genus Bulbochaete was in a comparatively divergent position to the other two genera. The relationship among the species of Oedogonium was discussed, focusing on ITS-2 phylogeny analyzed combining with some morphological characteristics. Our results showed that all the dioecious nannandrous taxa involved in this study were resolved into one clade, while all the monocious taxa were clustered into another clade as a sister group to the former. The report also suggests that the dioecious macrandrous taxa form a paraphyly and could be more basally situated than the dioecious nannandrous and the monoecious taxa by means of molecular phylogeny and morphotype investigations.

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A concise quantitative model that incorporates information on both environmental temperature M and molecular structures, for logarithm of octanol-air partition coefficient (K-OA) to base 10 (logK(OA)) of PCDDs, was developed. Partial least squares (PLS) analysis together with 14 quantum chemical descriptors were used to develop the quantitative relationships between structures, environmental temperatures and properties (QRSETP) model. It has been validated that the obtained QRSETP model can be used to predict logK(OA) of other PCDDs. Molecular size, environmental temperature (T), q(+) (the most positive net atomic charge on hydrogen or chlorine atoms in PCDD molecules) and E-LUMO (the energy of the lowest unoccupied molecular orbital) are main factors governing logK(OA) of PCDD/Fs under study. The intermolecular dispersive interactions and thus the size of the molecules play a leading role in governing logK(OA). The more chlorines in PCDD molecules, the greater the logK(OA) values. Increasing E-LUMO values of the molecules leads to decreasing logK(OA) values, implying possible intermolecular interactions between the molecules under study and octanol molecules. Greater q(+) values results in greater intermolecular electrostatic repulsive interactions between PCDD and octanol molecules and smaller logK(OA) values. (C) 2002 Elsevier Science B.V. All rights reserved.

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Two-port InGaAsP/InP square resonator microlasers with a side length of 20 mm have been fabricated by the planar technology process, which have two 1 mu m-wide output ports connected to the vertices of the square resonator. Continuous-wave electrically injected microsquare lasers have been realised at room temperature with mode Q-factors of 1.75 x 10(4) at the threshold current.

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Electron spin relaxation of charged excitons X+ and X2+ are investigated by time-resolved and polarization-resolved photoluminescence spectroscopy. For X+ configuration, the electron spin relaxation shows a typical decay curve induced by hyperfine interaction with nuclei, whereas for X2+ state the electron spin relaxation is affected not only by nuclei but also by electron-hole exchange interaction, leading to a power-law time dependence.

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The electroluminescence efficiency at room temperature and low temperature (15 K) in a wide-narrow-well InGaN/GaN light-emitting diode with a narrow last well (1.5 nm) and a narrow next-to-last barrier (5 nm) is investigated to study the efficiency droop phenomenon. A reduced droop in the wide wells and a reduced droop at low temperatures reveals that inferior hole transportation ability induced Auger recombination is the root for the droop at high excitation levels.

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The optical properties of quantum rods in the absence and presence of the magnetic field are studied in the framework of effective-mass envelope function theory. The two-dimensional (2D) and 1D transition dipoles of wurtzite quantum rods are investigated. It is found that the transition dipoles change from 2D to 1D as the aspect ratio of the ellipsoid increases, in agreement with the experimental results. The linear polarization factors of optical transitions of quantum rods with critical aspect ratio are zero at every orientation of the wave propagation. So quantum rods with critical aspect ratio have isotropic transition dipoles. Due to the 2D or 1D transition dipoles, the linear polarization factors of optical transitions of quantum rods change from negative or positive values to zero as the orientation of the wave propagation changes from the x axis of the crystal structure to the z axis, in agreement with the experimental results. Under magnetic field applied along the z axis of the crystal structure, the negative linear polarization factors in the 2D transition dipole case decrease as the magnetic field increases, while under magnetic field applied along the x axis, the negative linear polarization factors increase as the magnetic field increases. The antisymmetric Hamiltonian is very important to these effects of the magnetic field. It is found that quantum rods with a given radius at a given temperature have dark excitons in a range of aspect ratio. The dimensions along the x, y axes of the crystal structure play opposite roles to the dimension along the z axis on the dark exciton phenomenon. Dark excitons become bright under appropriate magnetic field.