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921.
The beam energy is measured in the e^+e^- collision by using Compton backscattering. The uncertainty of this measurement process is studied by virtue of analytical formulas, and the special effects of variant energy spread and energy drift on the systematic uncertainty estimation are also studied with the Monte Carlo sampling technique. These quantitative conclusions are especially important for understanding the uncertainty of the beam energy measurement system.  相似文献   
922.
江苑珍  潘恒 《数学学报》2015,(1):131-140
证明了在适当条件下,指数型能量和指数型调和映射是共形不变的.我们主要研究了指数型调和的黎曼淹没和等距浸入,还研究了与黎曼等距浸入相关的高斯映射是指数型调和.  相似文献   
923.
<正>近日,中国科学院大连化学物理研究所燃料电池研究部陈剑研究员领导的先进二次电池研究组(DNL0306组)在高比能量锂二次电池方面取得新进展,研制成功额定容量15 Ah的锂硫电池,并形成小批量制备能力。这是迄今世界上已见报道的容量最大的锂硫电池。第三方(中国科学院物理研究所)检测结果表明,电池的比能量大于430 Wh/kg,超过了Sion Power公司报道的由其研制的锂硫电池的技术指标  相似文献   
924.
针对自发拉曼散射技术应用于实际燃烧场参数测量时面临的主要技术难题,采用XeF(C-A)激光作为激励光源,开展了自发拉曼散射技术实验研究。通过分析拉曼散射过程对光源参数的要求,优化了XeF(C-A)激光器部分参数,建立了自发拉曼散射诊断系统,实现了气体介质主要组分浓度在线测量,对比了XeF(C-A)激光与主流激光作为拉曼散射光源的优缺点。结果表明:与现有主流光源相比,具有脉冲能量大、微秒级脉宽,位于可见光波段等特点的放电抽运XeF(C-A)激光非常适合用作自发拉曼散射激励光源。  相似文献   
925.
先进绝热压缩空气储能(AA-CAES)是解决风电不稳定性问题的一种能量存储技术。本文以热力学理论为基础,建立了风电与AA-CAES集成系统的理论模型并开展了仿真模拟工作,对集成系统在额定、扰动工况下的能量转化规律进行了对比和分析。结果表明集成系统存在电能、空气内能和水的热能的能量转化,内能与热能的转化随过程进行而变化,且两者的变化规律相反;扰动风速通过改变功率输入影响压气机效率,进而影响电能向空气内能的转化,但对系统热能的影响相对较小。  相似文献   
926.
本文以煤和低浓度煤层气为原料,采用CO_2吸收增强气化,在造气工段制得φ(H_2)/φ(N_2)=3、φ(CO_2+CO)≤0.30%的粗煤气,直接进入气体精制岗位,并取消常规制气的补氮过程或替代空气气化;采用单元建模和流程模拟的方法对系统可行性和适宜操作条件进行分析;预报煤和煤层气共气化的产物分布,提出满足精制岗位进口气体品质要求的制气温度、压力、水煤比、钙煤比和煤气流量等参数;分析循环倍率对合成氨产量、系统净输出功等参数的影响,得到实现系统能量自平衡、且合成氨能耗最低的循环倍率。理论分析表明,该流程可用于合成气制备及氨电联产。  相似文献   
927.
By employing the balance condition between the lattice potential and the interatomic interaction, we study the ground state solutions of superfluid Fermi gases in Fourier-synthesized (FS) optical lattices. The average energy of the ground state, the atoms number, and the atom density distribution of the Fermi system are analytically derived along the Bose–Einstein condensation (BEC) side to the Bardeen–Cooper–Schrieffer (BCS) side. We analyze the properties of ground state solutions at both the BEC limit and unitarity in FS optical lattices. It is found that the relative phase α between the two lattice harmonics impacts greatly on the properties of the ground state of the superfluid Fermi gas. Especially in the BCS limit, when α=π/2, the average energy presents an exponential form with the increase of the potential depth of the lattice harmonics v2. Meanwhile, there exits a minimal value. Moreover, due to the Fermi pressure, the atom density distribution at unitarity is more outstretched than that in the BEC limit. The average energy at unitarity is apparently larger than that in the BEC limit. The properties of the ground state solution exhibit very different behaviors when the system transits from the BEC side to the BCS side.  相似文献   
928.
The dispersion relations of staggered arranged metal nanowire arrays are numerically investigated. It is demonstrated that the structure can support the propagation of plasmon modes with zero and negative group velocities derived directly from the dispersion curves, apart from normal plasmon modes with positive group velocities. Furthermore, the effects of the structural parameters on the dispersion behaviors of plasmon modes are also examined.  相似文献   
929.
The Jovian magnetosphere is modulated by the solar wind and centrifugal force. The configuration of the magnetic field in the previous model of the magnetosphere including the centrifugal force is consistent with the observations at low magnetic latitude (Λ〈50°), while there is a substantial difference between the results of the model and the observations at high magnetic latitude (Λ≥50°), especially in the distant magnetotail. Based on the previous model, a new configuration of the Jovian magnetosphere in the night side is suggested by a three-step transformation in this study. The new magnetosphere obtained by the transformation method is flattened in the z-direction and stretched in the x-direction in distant magnetotail, which agree with general knowledge.  相似文献   
930.
Emission properties of self-assembled green-emitting InGaN quantum dots (QDs) grown on sapphire substrates by using metal organic chemical vapor deposition are studied by temperature-dependent photoluminescence (PL) measurements. As temperature increases (15-300K), the PL peak energy shows an anomalous V-shaped (redshift blueshift) variation instead of an S-shaped (redshift-blueshift-redshift) variation, as observed typically in green-emitting InGaN/GaN multi-quantum wells (MOWs). The PL full width at half maximum (FWHM) also shows a V-shaped (decrease-increase) variation. The temperature dependence of the PL peak energy and FWHM of QDs are well explained by a model similar to MOWs, in which carriers transferring in localized states play an important role, while the confinement energy of localized states in the QDs is significantly larger than that in MOWs. By analyzing the integrated PL intensity, the larger confinement energy of localized states in the QDs is estimated to be 105.9meV, which is well explained by taking into account the band-gap shrinkage and carrier thermalization with temperature. It is also found that the nonradiative combination centers in QD samples are much less than those in QW samples with the same In content.  相似文献   
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