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1)  near-stoichiometric LiNbO3 single crystal
近化学计量比LiNbO3
2)  near stoichiometric Mg∶Fe∶LiNbO3
近化学计量比Mg∶Fe∶LiNbO3晶体
3)  stoichiometric Mg∶Fe∶LiNbO3
化学计量比Mg∶Fe∶LiNbO3晶体
4)  near-stoichiometric
近化学计量比
1.
Numerical Simulation on Mode Field Distribution in Near-stoichiometric Ti: LiNbO_3 Strip Waveguide Fabricated by VTE Technique;
VTE技术制备的近化学计量比Ti:LiNbO_3条形波导模场分布的数值仿真
2.
An magnesium(MgO)-doped near-stoichiometric lithium niobate crystal(MgO:SLN)of 40 mm in diameter and 60 mm in length was grown by an improved Czochralski technique from a 58.
5]熔体中生长了φ40mm×60mm的掺镁近化学计量比铌酸锂(LiNbO3)晶体。
3.
Domain structure of the near-stoichiometric LiNbO_3 crystal grown by double-crucible pulling method and cut along its each direction is analyzed in this paper.
本文对采用双坩埚提拉法生长的近化学计量比LiNbO3 晶体沿其各向切块腐蚀后通过直接观察和在金相显微镜下观察,对其各个面的畴结构进行了分析。
5)  near stoichiometric
近化学计量比
1.
A kind of Mg-doped near stoichiometric LiNbO3 crystal was grown with Czochralski method from a stoichiometric melt with addition of llmol% K20 and lmol% MgO.
利用提拉法,从掺入11mol%KzO和1mol%MgO的化学配比LiNbO3熔体中生长了高质量的掺镁近化学计量比LiNbO3晶体。
2.
9% K 2O (in mole) flux in raw materials of LiNbO 3 crystal, Fe doped near stoichiometric LiNbO 3 (SLN∶Fe) crystal were grown by top seeded solution growth (TSSG) method and Fe doped congruent LiNbO 3(CLN∶Fe) were grown by Czochralski method.
9%K2 O(摩尔分数 )助熔剂 ,用顶部籽晶 (TSSG)法生长近化学计量比掺铁铌酸锂 (SLN∶Fe) ,以及采用Czochralski法生长同成分掺铁铌酸锂 (CLN∶Fe)。
6)  stoichiometric
近化学计量比
1.
Optical Properties of Co-doped Stoichiometric Lithium Niobate
双掺杂近化学计量比铌酸锂晶体的全息光学特性研究
2.
However, the composition of LiNbO_3 crystal de- viated from its stoichiometric ratio, the existence of lithium vacancies and antib- it niobium defects, and result in many carrier traps, space charge easily be capt- ured, which led to the disadvantage of crystal response time of long, small coup- ling gain coefficient and anti-light-induced scattering ability of low.
尽管近化学计量比的晶体比同成份配比的本征缺陷少,但仍然存在摩尔分数为1%的反位铌和摩尔分数为4%的锂空位以及大量的极化子、双极化子、氢离子、局域钛铁矿等缺陷结构。
补充资料:化学计量式
分子式:
CAS号:

性质:是用元素符号和分子式来表示一个化学反应的等式。等号左边表示全部反应物,右边为全部生成物。因为每一个化学反应都要遵守质量守恒定律,也就是反应前后各元素的原子总数保持不变,所以在化学计量式中每个化学式前面都有系数(称为化学计量系数),以使等号两边各元素的原子总数相等。因此化学计量式表达了物质在化学反应中质的变化和量的关系。 化学计量式一般也可写成这样的通式:;式中,Aj为组分;αj为化学计量系数(stoichiometric coefficient)。

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