952 resultados para Scheurl, Christoph, 1481-1542.


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Origin of polarization sensitivity of photonic wire waveguides (PWWs) is analysed and the effective refractive indices of two different polarization states are calculated by the three-dimensional full-vector beam propagation method. We find that PWWs are polarization insensitive if the distribution of its refractive index is uniform and the cross section is square. An MRR based on such a polarization-insensitive PWW is fabricated on an 8-inch silicon-on-insulator wafer using 248-nm deep ultraviolet lithography and reactive ion etching. The quasi-TE mode is resonant at 1542.25 nm and 1558.90 nm, and the quasi-TM mode is resonant at 1542.12 nm and 1558.94 nm. The corresponding polarization shift is 0.13 nm at the shorter wavelength and 0.04 nm at the longer wavelength. Thus the fabricated device is polarization independent. The extinction ratio is larger than 10 dB. The 3 dB bandwidth is about 2.5 nm and the Qvalue is about 620 at 1558.90 nm.

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A pulsed InGaAsP-Si hybrid laser is fabricated using metal bonding. A novel structure in which the optical coupling and metal bonding areas are transversely separated is employed to integrate the silicon waveguide with an InGaAsP multi-quantum well distributed feedback structure. When electrically pumped at room temperature, the laser operates with a threshold current density of 2.9 kA/cm(2) and a slope efficiency of 0.02 W/A. The 1542 nm laser output exits mainly from the Si waveguide.

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ZnO film of 8 mu m thickness was grown on a sapphire (0 0 1) substrate with a GaN buffer layer by a novel growth technique called metal-source vapor phase epitaxy (MVPE). The surface of ZnO film measured by scanning electron microscope (SEM) is smooth and shows many regular hexagonal features. The full width at half maximum (FWHM) of ZnO(0 0 2) and (1 0 2) omega-scan rocking curves are 119 and 202 arcsec, corresponding a high crystal quality. The status of the strain in ZnO thick film was particularly analyzed by X-ray diffraction (XRD) omega-20 scanning. The results show that the strain in ZnO film is compressive, which is also supported by Raman scattering spectroscopy. The compressive strain can solve the cracking problem in the quick growth of ZnO thick film. (c) 2008 Elsevier Ltd. All rights reserved.

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By optimizing the molecule beam epitaxy growth condition, the quality of quantum cascade (QC) material has greatly been improved. The spectrum of double x-ray diffraction indicates that the interface between the constituent layers is very smooth, the lattice mismatch between the epilayer and the substrate is less than 0.1%, and the periodicity fluctuation of the active region is not more than 4.2%. The QC laser with the emission wavelength of about 5.1 mum is operated at the threshold of 0.73 kA/cm(2) at liquid nitrogen temperature with the repetition rate of 10kHz and at a duty cycle of 1%. Meanwhile, the performance of the laser can be improved with suitable post process techniques such as the metallic ohmic contact technology.

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The storage of photoexcited electron-hole pairs is experimentally carried out and theoretically realized by transferring electrons in both real and k spaces through resonant Gamma - X in an AlAs/GaAs heterostructure. This is proven by the peculiar capacitance jump and hysteresis in the measured capacitance-voltage curves. Our structure may be used as a photonic memory cell with a long storage time and a fast retrieval of photons as well.

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A novel distribute feedback (DFB) laser which gave two different wavelengths under two distinct work conditions was fabricated. The laser consists of two Bragg gratings with different periods corresponding to wavelength spacing of 20 nm in an identical active area. When driving current was injected into one of the different sections separately, two different wavelengths at 1542.4 and 1562.5 nm were realized. The side mode suppression ratio (SMSR) of 45 dB or more both for the two Bragg wavelengths were achieved. The fabricating process of the laser was just the same as that of traditional DFB laser diode. This device can be potentially used in coarse wavelength division multiplexer (CWDM) as a promising light source and the technology idea can be used to enlarge the transmission capacity in metro area network (MAN).

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采用高氢稀硅烷热丝化学气相沉积方法制备氢化微晶硅薄膜。其结构特征用Raman谱,红外透射谱,小角X射线散射等来表征。结果表明微晶硅的大小及在薄膜中的晶态比χ_c随氢稀释度的提高而增加。而从红外谱计算得到氢含量则随氢稀释度的增加而减少。小角X射线散射结果表明薄膜致密度随氢稀释度的增加而增加。结合红外谱和小角X射线散射的结果讨论与比较了不同相结构下硅网络中H的键合状态。认为随着晶化的发生和晶化程度的提高逐渐移向晶粒表面,在硅薄膜中H的存在形式从以SiH为主向SiH_2转变,即在微晶硅膜中主要以SiH_2形式存在于晶粒的界面。

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采用可求解可压缩流动与传热的全速度SIMPLE算法, 对低功率氩电弧加热发动机内部的传热与流动进行了数值模拟, 获得了电弧加热发动机内的温度、速度、马赫数及流线分布. 计算结果表明: 电弧加热发动机内最高温度出现在阴极下游附近中心轴线处, 这是因为电弧在阴极表面收缩形成阴极弧点, 从而焦耳热成为该高温区的主要加热机制; 沿着发动机中心轴线, 气体温度和速度开始时随着距阴极距离的增加而迅速增加, 然后在等离子体流向喷管出口的过程中, 气体温度和速度逐渐下降. 此外还详细考察了弧电流变化对电弧加热发动机内部传热与流动特性的影响, 计算获得的发动机流量和比冲与实验结果基本一致.

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速度小于Bohr速度(vBhor=2.9×106m/s)的高电荷态离子40Ar16+(动能EK=150keV,速度v=8.5×105m/s)入射金属(Ni,Mo,Au和Al)表面,同时测量产生的Ar原子近红外光谱线和X射线谱.实验结果表明,低速高电荷态离子在金属表面俘获电子中性化,形成多激发态的Ar空心原子,空心原子退激辐射从近红外光谱线到X射线波段谱线,近红外光谱线辐射强度说明,低速高电荷态离子在金属表面中性化过程中,金属的功函数起着重要作用,进而验证了经典过垒模型.

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利用同位旋相关的量子分子动力学模型 ,研究了中能重离子碰撞过程中的库仑相互作用对于动量耗散的同位旋效应 .计算结果表明 :由于库仑相互作用的存在 ,使得碰撞过程中的化学不稳定区和力学不稳定区减小 ,明显地减弱了动量耗散 ;其减弱的程度与对称势的形式及强度有关 ,对称势越强则动量耗散的减弱幅度越大 .动量耗散灵敏地依赖于核子 核子碰撞截面的同位旋相关性而较弱地依赖于对称势 ,这一特征不论有无库仑相互作用均存在 .

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Respiration-induced target motion is a major problem in intensity-modulated radiation therapy. Beam segments are delivered serially to form the total dose distribution. In the presence of motion, the spatial relation between dose deposition from different segments will be lost. Usually, this results in over-and underdosage. Besides such interplay effects between target motion and dynamic beam delivery as known from photon therapy, changes in internal density have an impact on delivered dose for intensity-modulated charged particle therapy. In this study, we have analysed interplay effects between raster scanned carbon ion beams and target motion. Furthermore, the potential of an online motion strategy was assessed in several simulations. An extended version of the clinical treatment planning software was used to calculate dose distributions to moving targets with and without motion compensation. For motion compensation, each individual ion pencil beam tracked the planned target position in the lateral aswell as longitudinal direction. Target translations and rotations, including changes in internal density, were simulated. Target motion simulating breathing resulted in severe degradation of delivered dose distributions. For example, for motion amplitudes of +/- 15 mm, only 47% of the target volume received 80% of the planned dose. Unpredictability of resulting dose distributions was demonstrated by varying motion parameters. On the other hand, motion compensation allowed for dose distributions for moving targets comparable to those for static targets. Even limited compensation precision (standard deviation similar to 2 mm), introduced to simulate possible limitations of real-time target tracking, resulted in less than 3% loss in dose homogeneity.