1)Yb-dopingYb掺杂
英文短句/例句
1.Doping Effects of Dy and Yb in rare-earth doped manganic oxides;Dy、Yb掺杂稀土锰氧化物的磁性和电性
2.Luminescence Characteristic of Yb-Doped GdVO_4:Tm Blue Luminescent MaterialYb掺杂蓝色荧光材料GdVO_4:Tm的发光性能
3.Research on the Yb-Doped Zirconate/Sulphate Composite Proton ConductorsYb掺杂锆酸钡/硫酸盐复相质子导体的研究
4.Analysis of Long-period Gratings in Er-Yb Doped Phosphate Glass Slab WageduidesEr-Yb掺杂磷酸盐玻璃平面波导长周期光栅分析
5.Research on Yb~(3+) doping mechanism of ytterbium-doped fiber掺镱石英光纤中Yb~(3+)掺杂机理的研究
6.Energy Upconversion from Yb~(3+)-doped ZrF_4 Glass;稀土Yb~(3+)掺杂ZrF_4玻璃的能量上转换
7.Up-conversion Investigation in Rare-earth Ions Doped β-NaMF_4(M=Yb, Y) Materials稀土掺杂β-NaMF_4(M=Yb,Y)的上转换研究
8.Spectrum Properties of Yb~(3+)-doped Silicate GlassYb~(3+)掺杂硅酸盐玻璃光谱特性的研究
9.Photoluminescence Character and Thermal Application of Rare Earth (Dy, Nd, Yb, Er) Co-doped Al_2O_3稀土(Dy,Nd,Yb,Er)掺杂氧化铝发光特性和测温应用
10.Spectral of Yb:YAB Single Crystal with Different Yb~(3+) Concentration不同掺杂浓度Yb~(3+):YAl_3(BO_3)_4晶体光谱研究
11.Preparation of Yb~(3+)Doped Double-clad Photonic Crystal FiberYb~(3+)掺杂双包层光子晶体光纤制备研究
12.Study on High-Power Ytterbium (Yb~(3+))-Doped Double-Clad Fiber Laser;高功率镱(Yb~(3+))离子掺杂双包层光纤激光器的研究
13.Preparation and Characterization of Fluorphosphate Glasses Doped with Ho~(3+)/Tm~(3+)/Yb~(3+) Ions;Ho~(3+)/Tm~(3+)/Yb~(3+)掺杂氟磷酸盐玻璃的制备与性能表征
14.Direct-sensitized Upconversion in Yb~(3+) and Tm~(3+) Codoped PGETYA GlassTm~(3+)和Yb~(3+)共掺杂PGETYA玻璃的直接敏化上转换发光
15.Upconversion of Er~(3+)/Yb~(3+) doped lead fluosilicate microcrystalline glassEr~(3+)/Yb~(3+)掺杂氟硅铅酸盐微晶玻璃的上转换发光
16.Synthesis and Up-Conversion Luminescence Properties of Er~(3+)/Yb~(3+) Codoped SrF_2 NanocrystalsEr~(3+)/Yb~(3+)共掺杂SrF_2纳米晶的合成及上转换发光特性
17.Effect of La_2O_3 on Properties of Yb~(3+) Doped Yttrium Oxide Transparent Laser CeramicsLa_2O_3对Yb~(3+)掺杂的氧化钇透明激光陶瓷性能的影响
18.Fabrication of LaF_3:Er,Yb nanoparticle doped organic-inorganic hydrid material waveguide amplifier and its propertiesLaF_3∶Er,Yb纳米颗粒掺杂有机/无机杂化材料制备光波导放大器及特性研究
相关短句/例句
Yb-doped BaZrO3Yb掺杂锆酸钡
3)erbium/ytterbium codoped fiberEr/Yb辅助掺杂光纤
4)Er-Yb co-doped phosphate glassEr-Yb掺杂磷酸盐玻璃
5)Yb-doped glass掺Yb玻璃
6)Yb-doped fiber掺Yb光纤
延伸阅读
半导体材料掺杂半导体材料掺杂doping for semiconductor material bondootl Col}{00 ehonzo半导体材料掺杂(doping for semiconduCtormaterial)对材料掺入特定的杂质以取得预期的物理性能与参数的半导体材料制备方法,在大多数情况下,是使用掺杂后的半导体材料进行器件制备。掺杂的具体目的有:(l)获得预期的导电类型,如p型掺杂或n型(见半导体材料导电机理)掺杂;(2)获得预期的电阻率、载流子浓度(见半导体材料导电机理),如重掺单晶(见简并半导体)、半绝缘砷化稼的制备;(3)获得低的少子寿命(见半导体材料导电机理),如锗中掺金;(4)获得晶体的良好力学性能,如硅中掺氮;(5)提高发光效率,改变发光波长,如磷化稼中掺氮、掺氧(见发光用半导体材料);(6)形成低维材料及超晶格(见半导体超晶格);(7)调整晶格匹配,如硅中掺锡。 对掺杂的要求主要是:精度、均匀性、分布空间。掺杂的方法有熔体掺杂、气相掺杂、中子擅变掺杂、离子注入掺杂、表面涂覆掺杂(见区熔硅单晶)。掺杂是在半导体材料制备过程的某一个或几个工序中进行,大多数是在单晶拉制过程中进行掺杂,薄膜材料则在薄膜制备过程中进行掺杂,而中子擅变掺杂、离子注入掺杂则离开晶体制备而成为独立的工序。 (万群)
