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1.
轮轨黏着是铁路运输中的关键基础性科学问题之一,而轮轨接触界面良好的黏着状态是列车安全和高品质运行的根本保障. 轮轨系统作为1个开放的系统,受到各种自然环境因素的影响,如湿度、温度、水、风沙甚至铁氧化物,而所有的这些环境因素都会影响轮轨接触界面的黏着状态和损伤行为. 本文中综述了水、湿度、温度和风沙等自然环境因素对轮轨黏着特性影响规律的研究进展,分析了自然环境因素下轮轨界面铁氧化物特征,重点探讨了自然环境因素对铁氧化物形成的影响及其对轮轨接触黏着特性的影响规律和作用机理,并提出了轮轨黏着的未来研究方向.   相似文献   
2.
Phosphors with outstanding luminescence thermal stability are desirable for high-power phosphor-converted light-emitting diode (pc-LED) lightings. High structural rigidity and large bandgap of phosphor hosts are helpful to suppress nonradiative relaxation of optical centers and realize excellent thermal stability. Unfortunately, few host materials simultaneously possess aforementioned structural features. Herein, we confirm that Sr3(PO4)2 (SPO) phosphate possesses high structural rigidity (Debye temperature, ΘD = 559 K) and large bandgap (Eg = 8.313 eV) by density functional theory calculations. As expected, Eu2+-doped SPO purple-blue phosphors show extraordinary thermal stability. At 150/300 °C, SPO:5%Eu2+ presents emission loss of only 4%/8% and a predicated ultrahigh thermal quenching temperature of 973 °C. The most strikingly discoveries here are that thermal-induced emission compensation appears within two distinct Eu2+ sites of SPO host. The outstanding thermal stability, on one hand, is attributed to rigid structure and large bandgap of host that inhibits nonradiative relaxation of Eu2+ and on the other hand, the emission self-compensation of Eu2+. Benefiting from synergistic effect of emission compensation and nonradiative transition restriction of Eu2+, as-prepared SPO:5%Eu2+ purple-blue phosphor not only presents superior thermal stability but also high internal quantum efficiency of 95.1% and excellent hydrolysis resistant. Some advanced applications are explored including white LED lighting and wide-color-gamut display. Our work provides in-deep insights into structure-property relationships of thermally stable phosphors.  相似文献   
3.
钟东洲  曾能  杨华  徐喆 《物理学报》2021,(7):154-166
基于外部光注入的光泵浦自旋垂直腔表面发射激光器(vertical cavity surface-emitting laser,VCSEL)的两个混沌偏振分量,提出了对两个复杂形状目标中的多区域精确测距方案.这里,两个混沌偏振探测波具有飞秒量级快速动态并且被双极性sinc波形调制,使它们具有时空不相关特性.利用这些特性,通过计算多束延时反馈混沌偏振探测波形和与之相对应的参考波形的相关性,实现了对两个复杂形状目标多区域位置矢量精确测量.研究结果表明,对多区域小目标的测距具有非常低的相对误差(低于0.94%).当光电探测器的带宽足够大时,其测距的分辨率达到0.4 mm,并具有很强的抗噪声能力.本文的研究结果在复杂形状目标的精确测距方面具有潜在应用.  相似文献   
4.
以二氧六环/冰醋酸为溶剂体系,采用相分离法制备了聚乳酸(PLA)/壳聚糖(CS)复合纳米纤维结构的组织工程支架,探讨了不同CS含量、不同凝胶温度及不同分子量对PLA/CS复合支架纳米纤维结构的影响以及支架的生物活性。结果表明,凝胶温度对PLA/CS复合材料的纳米纤维结构影响较大,且随着温度的降低,结构的微观尺寸也逐渐增大,从纳米级上升到普通的尺寸结构;CS含量对PLA/CS复合支架的基体结构影响不大;实验范围内PLA分子量对PLA/CS复合支架的纳米纤维结构有重要影响:分子量大的样品,较易得到PLA/CS复合纳米纤维结构的材料,而分子量小的样品则不能得到纳米纤维结构。另外,生物矿化实验表明CS的添加有利于PLA/CS复合材料生物活性的提高。  相似文献   
5.
新反应、新试剂的发展是有机合成化学的重要研究内容,基于前期在α-氨基丙二腈合成方法学方面的工作基础,我们发展了一例铜催化的α-氨基丙二腈的脱氰氧代反应.通过将甲酰胺转化为α-氨基丙二腈后,借助其亲核属性来合成α-氨基丙二腈底物,而后将底物重新转化为酰胺,从而实现形式上的氨基甲酰负离子的亲核加成(取代)反应.该工作首次完成了形式上的甲酰胺碳原子的极性反转,实现了将α-氨基丙二腈作为氨基甲酰负离子替代物的反应新模式,为叔酰胺化合物的合成提供了新的思路和方法,且具有反应条件简单,底物适用性广及适合克级规模制备等特点.  相似文献   
6.
钟东洲  计永强  邓涛  周开利 《物理学报》2015,64(11):114203-114203
针对主和副垂直腔表面发射激光器构成的外部注入激光器系统的偏振转换及其非线性动力学行为, 利用周期性极化铌酸锂晶体中准相位匹配线性电光调制, 本文提出了一种新的操控方案并且探索了其控制规律. 研究结果发现, 受到平行光注入或正交光注入的副激光器输出偏振度随外加电场成周期性振荡变化, 其振荡波峰轨迹包络曲线为正弦曲线, 而振荡波谷轨迹包络曲线为余弦曲线; 选取一定的主激光器偏置电流, 通过对来自主激光器的光进行电光调制, 受到两种方式注入的副激光器可以输出任意偏振模, 并且其非线性动力行为经历不同的演变. 另外, 副激光器的偏振度仅依赖于外加电场, 与副激光器的偏置电流无关.  相似文献   
7.
In this study, the optical conductivity of substitutionary doped graphene is investigated in the presence of the Rashba spin orbit coupling (RSOC). Calculations have been performed within the coherent potential approximation (CPA) beyond the Dirac cone approximation. Results of the current study demonstrate that the optical conductivity is increased by increasing the RSOC strength. Meanwhile it was observed that the anisotropy of the band energy results in a considerable anisotropic optical conductivity (AOC) in monolayer graphene. The sign and magnitude of this anisotropic conductivity was shown to be controlled by the external field frequency. It was also shown that the Rashba interaction results in electron–hole asymmetry in monolayer graphene.  相似文献   
8.
In this paper, a high tunable Electro-optical filter is designed and simulated with low electric power consumption. A silicon nanobeam resonator based on one-dimensional photonic crystal in the form of Fabry–Perot structure, silicon-on-insulator waveguide, is proposed with a PIN junction. In designing nanobeam resonator, “deterministic design method” is used to achieve the high quality factor and high-transmission rate. Tuning of the resonant wavelength in the output channel of the filter is achieved by manipulating the refractive index of the active area by using the free-carrier dispersion effect. The output wavelengths of designed device can be tuned for the telecom-friendly 1.55 µm range. The device shows a wavelength shift higher than 3 nm for a power consumption of only 0.9 mW. Finally, the simulation results show that the provided device can be considered as a narrowband and tunable Electro-optical filter that is suitable for DWDM communication system.  相似文献   
9.
本研究采用基于密度泛函理论的第一性原理方法,对纯锐钛矿TiO2及贵金属(Ru、Pd、Pt、Ag和Au)掺杂锐钛矿TiO2的晶格结构、能带结构、电子态密度及光学性质进行了计算。结果表明:贵金属掺杂后TiO2的晶格体积都出现了不同程度的增大;Pd和Pt掺杂后TiO2体系的禁带宽度减小,Ru、Ag和Au掺杂后体系表现出了一定的金属属性,五种贵金属掺杂TiO2后吸收光谱都有红移的趋势。掺杂形成能计算表明,除Ru金属外,富氧条件下掺杂更容易实现。  相似文献   
10.

In this paper we consider the situation that four identical two-level atoms are separately trapped in four single-mode optical cavities, which are placed at the vertices of a tetrahedron and coupled by six fibers. Each atom resonantly interacts with cavity via a one-photon hopping. The evolution of the state vector of the system is given by solving the schrödinger equation when the total excitation number of the system equals one. The geometrical quantum discords between atoms and between cavities are investigated. The effects of cavity-fiber coupling coefficient on the geometrical quantum discords between atoms and between cavities are discussed. The results obtained using the numerical method indicate that the geometrical quantum discords between atoms and between cavities are all weakened with increase of cavity-fiber coupling coefficient.

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