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1)  Self-polarization
自极化
1.
The Effects of Self-polarization on Emission and Excitation Spectra of Eu(DBM)_3·Phen Doped in Poly(methyl methacrylate);
自极化效应对稀土掺杂聚合物激发和发射光谱的影响(英文)
2)  spontaneous polarization
自发极化
1.
The spontaneous polarization of ferroelectric films was strengthened and then weakened wi.
结果表明,随退火温度升高,(Pb,La)TiO3铁电薄膜的表面形貌表现出从粘连到结晶较好,到出现抱团的变化过程;此外,随退火温度升高,铁电薄膜的自发极化强度先增强后减弱。
2.
The migration distance is closely related to the spontaneous polarization, the size of particle and the direction of polar axis.
结果表明 ,在SEM下用二次电子 (SE)电子束轰击电气石微粒 ,电气石微粒产生自迁移现象 ,迁移距离与自发极化强度、微粒粒径、极性轴方向等因素密切相关。
3.
In view of the pyroelectric performance of PZT95/5 ceramics during the FRL-FRH transition, an analytic formula of spontaneous polarization varying with the temperature during the phase transition was established.
针对PZT95/5陶瓷材料FRL-FRH相变时的热释电特性,建立了相变过程中自发极化随温度变化的定量计算表达式,表达式中的函数级数依据Leibniz交错级数定理,可按照实际要求的精确程度进行级数求和,故利用计算机拟合了自发极化随温度的变化曲线。
3)  spin polarization
自旋极化
1.
Effect of spin polarization on electron recombination dynamics in bulk intrinsic GaAs;
本征GaAs中电子自旋极化对电子复合动力学的影响研究
2.
Current-induced spin polarization in spin-orbit coupling systems
自旋轨道耦合系统中的电流导致的自旋极化
3.
Relation between charge shot noise and spin polarization governed by Rashba spin orbit interaction
Rashba自旋轨道耦合作用下电荷流散粒噪声与自旋极化的关系研究
4)  spin-polarization
自旋极化
1.
The results show that:(i) the spin-polarization of electron can not be produced in the anti-parallel magnetic barriers structure at zero bias voltage;(ii) the energy threshold of electronic transmission are increase with the increases of magnetic field or bias voltage;(iii) the comparison of the electron spin polarization degree is made between.
研究了双磁垒量子结构中,磁场强度和偏压大小对电子自旋极化输运的影响。
2.
By using scattering matrix method,the quantized conductance,spin-polarization,and magnetoresistance in multi-channel ferromagnetic nanowire are calculated.
利用散射矩阵理论,研究了多通道纳米线结构中的量子化电导、自旋极化和弹道磁电阻。
5)  automatic polarization
自动极化
6)  to maximize,maximization
极大化<自>
补充资料:自发极化强度
分子式:
CAS号:

性质:每个电畴中原来已经具有的极化强度,常用Ps表示。在电滞回线上可用外推法将场强E=0,所对应的场强即为自发极化强度。钛酸钡等钙钛矿结构的铁电体具有自发极化作用;其结果是出现很高的介电常数。四方型钛酸钡室温下自发极化值为26×10-2Q/m2。日益增多的材料正被发现具有自发极化作用。

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