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991.
为了降低自由空间激光通信中对准难度,本文提出了采用离焦的方法以增大接收视场角。以满足通信所需最低能量(-35 d Bm)为基准,理论推导了探测器接收能量、接收视场角(FOV)、离焦接收能量及离焦量之间的相互关系,并通过Matlab仿真,分析对比了离焦接收能量和离焦量对接收视场角的影响。结果显示,当离焦量为0.5 mm时,离焦接收能量从-20.9 d Bm提高到-4.1 d Bm,接收视场角能增大0.27 mrad;当离焦接收能量为-4.1 d Bm时,离焦量从0.2 mm扩大到1.0 mm,视场角能增大1.75 mrad。通过对比表明,提高离焦接收能量以及扩大离焦量都可以增加接收视场角,且扩大离焦量的效果相对比较明显,这对后续离焦系统的设计提供了理论指导依据。 相似文献
992.
We designed a sector bowtie nanoantenna integrated with a rectifier (Au−TiOx−Ti diode) for collecting infrared energy. The optical performance of the metallic bowtie nanoantenna was numerically investigated at infrared frequencies (5−30 μm) using three-dimensional frequency-domain electromagnetic field calculation software based on the finite element method. The simulation results indicate that the resonance wavelength and local field enhancement are greatly affected by the shape and size of the bowtie nanoantenna, as well as the relative permittivity and conductivity of the dielectric layer. The output current of the rectified nano-rectenna is substantially at nanoampere magnitude with an electric field intensity of 1 V/m. Moreover, the power conversion efficiency for devices with three different substrates illustrates that a substrate with a larger refractive index yields a higher efficiency and longer infrared response wavelength. Consequently, the optimized structure can provide theoretical support for the design of novel optical rectennas and fabrication of optoelectronic devices. 相似文献
993.
The rotational properties of Bose−Einstein condensates in a synthetic magnetic field are studied by numerically solving the Gross−Pitaevskii equation and comparing the results to those of condensates confined in a rotating trap. It appears to be more difficult to add a large angular momentum to condensates spun up by the synthetic magnetic field than by the rotating trap. However, strengthening the repulsive interaction between atoms is an effective and realizable route to overcoming this problem and can at least generate vortex-lattice-like structures. In addition, the validity of the Feynman rule for condensates in the synthetic magnetic field is verified. 相似文献
994.
聚(3,4-乙撑二氧基噻吩):聚(苯乙烯磺酸)(PEDOT:PSS)由于兼备优良的导电性和透光率,被广泛用于透明功能性薄膜的制备,可作为空穴传输层或直接用作电极,运用到有机光伏器件(OPV)、有机场效应晶体管(OFET)、有机发光二极管(OLED)等薄膜器件的结构中,部分实现了氧化铟锡(ITO)薄膜的替代。常见的溶液成膜工艺是旋涂法,这种工艺操作较为简便,但原料利用率低,并且难以大面积均匀制备及图案化制膜, 不利于规模化生产和推广。近年来,喷墨打印制膜技术得到人们越来越多的关注。由于喷墨打印制膜技术可在多种基底上快速、高效地制备均匀大面积薄膜,并可轻易地实现各种精细图案化的制作,可溶液加工,更与卷对卷加工技术兼容,因此能够很好地节约原料,降低能耗和制作成本。目前已被广泛应用于有机电子学各个领域,特别是在制备柔性器件方面,展现出独特优势。本文对基于导电聚合物PEDOT:PSS的喷墨打印工艺进行了系统的阐述,对其制膜、图案化及其电子器件应用等相关研究作了较为全面的总结,并展望了其应用前景,对于更为全面、深刻地理解和推动喷墨打印制膜技术在有机电子学领域的应用具有重要的指导和借鉴意义。 相似文献
995.
大气硝基(NO3)自由基和五氧化二氮(N2O5)是对流层大气化学反应的核心物种,对于理解大气氧化性、二次有机气溶胶生成、活性卤素化学和全球硫素循环等对流层大气化学研究的关键问题具有重要意义。大气NO3自由基和N2O反应活性高、大气寿命短、浓度低,其定量分析非常具有挑战性。本文总结了大气NO3自由基与N2O5的实地测量方法,并对差分光学吸收光谱(DOAS)、腔衰荡光谱(CRDS)、腔增强光谱(CEAS)、激光诱导荧光光谱(LIF)、电子顺磁共振谱(MIESR)和化学离子化质谱(CIMS)等六类技术方法的准确度、精确度、时间分辨率、测量干扰、标定方法和系统稳定性等方面进行了系统比较。综合分析认为吸收光谱法是对流层NO3自由基与N2O5测量技术的发展方向,其中近期发展起来的腔技术(CRDS和CEAS)显示出较好的应用潜力。但是我国实际大气环境中普遍存在高浓度的颗粒物污染,如何在高颗粒物条件下实现NO3自由基与N2O5的精密准确测量具有挑战性。本文进一步归纳了NO3自由基与N2O5在城市、森林、自由大气和海洋海岸等典型大气环境条件下的浓度水平和主要科学发现,探讨了一些亟待解决的问题和可能的重点研究方向。 相似文献
996.
997.
A contrastive study on the influences of radial and three-dimensional satellite gravity gradiometry on the accuracy of the Earth's gravitational field recovery 下载免费PDF全文
The accuracy of the Earth’s gravitational field measured from the gravity field and steady-state ocean circulation explorer(GOCE),up to 250 degrees,influenced by the radial gravity gradient V zz and three-dimensional gravity gradient V ij from the satellite gravity gradiometry(SGG) are contrastively demonstrated based on the analytical error model and numerical simulation,respectively.Firstly,the new analytical error model of the cumulative geoid height,influenced by the radial gravity gradient V zz and three-dimensional gravity gradient V ij are established,respectively.In 250 degrees,the GOCE cumulative geoid height error measured by the radial gravity gradient V zz is about 2 1/2 times higher than that measured by the three-dimensional gravity gradient V ij.Secondly,the Earth’s gravitational field from GOCE completely up to 250 degrees is recovered using the radial gravity gradient V zz and three-dimensional gravity gradient V ij by numerical simulation,respectively.The study results show that when the measurement error of the gravity gradient is 3×10 12 /s 2,the cumulative geoid height errors using the radial gravity gradient V zz and three-dimensional gravity gradient V ij are 12.319 cm and 9.295 cm at 250 degrees,respectively.The accuracy of the cumulative geoid height using the three-dimensional gravity gradient V ij is improved by 30%-40% on average compared with that using the radial gravity gradient V zz in 250 degrees.Finally,by mutual verification of the analytical error model and numerical simulation,the orders of magnitude from the accuracies of the Earth’s gravitational field recovery make no substantial differences based on the radial and three-dimensional gravity gradients,respectively.Therefore,it is feasible to develop in advance a radial cold-atom interferometric gradiometer with a measurement accuracy of 10 13 /s 2-10 15 /s 2 for precisely producing the next-generation GOCE Follow-On Earth gravity field model with a high spatial resolution. 相似文献
998.
ZnO nanorod arrays with tunable size and field emission properties on an ITO substrate achieved by an electrodeposition method 下载免费PDF全文
In the present work,vertically aligned ZnO nanorod arrays with tunable size are successfully synthesized on nonseeded ITO glass substrates by a simple electrodeposition method.The effect of growth conditions on the phase,morphology,and orientation of the products are studied in detail by X-ray diffraction(XRD),scanning electron microscopy(SEM),and transmission electron microscopy(TEM).It is observed that the as-prepared nanostructures exhibit a preferred orientation along c axis,and the size and density of the ZnO nanorod can be controlled by changing the concentration of ZnCl2.Field emission properties of the as-synthesized samples with different diameters are also studied,and the results show that the nanorod arrays with a smaller diameter and appropriate rod density exhibit better emission properties.The ZnO nanorod arrays show a potential application in field emitters. 相似文献
999.
1000.
基于多尺度区域粒度分析的遥感图像分割 总被引:1,自引:0,他引:1
针对高分辨率遥感图像中不同地物具有粒度差异的特点,提出了一种多尺度区域粒度分析的图像分割方法。该方法首先使用均值漂移得到图像各尺度上的初始过分割区域,然后通过考虑区域大小和区域间上下文关系进行粒度分析,最后利用马尔科夫随机场模型对图像的粒度信息和光谱信息进行建模,得到分割结果。用平朔地区SPOT5和泰州航拍等遥感图像进行了实验,并与若干考虑光谱特征的分割方法进行了对比,结果表明提出的方法能有效地提高分割精度。 相似文献