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1)  energy migration
能量迂移
2)  Energy-transfer
能量转移
3)  energy migration
能量迁移
1.
By Application of the V\|F\|B model which is obtained by combining the Vasquez\|Flint (V\|F) model for donor\|acceptor energy transfer and the model of Burshtein for donor\|donor energy migration, the experimental luminescence decay curves of 4S 3/2 state of Er 3+ in LaF\-3 at 295K for four different concentrations are re\|simulated successfully.
基于以前综合V F模型 (考虑施主 受主 (D A)能量传递 )和B模型 (考虑施主 施主 (D D)能量迁移 )而提出的V F B综合模型 ,对La1-xErxF3 体系中Er3 +离子四种低掺杂浓度下 (x =0 0 0 1,0 0 0 3,0 0 1,0 0 2 ) 2 95K时4 S3/2 →4 I15/2 发光的时间演化曲线成功地重新进行了数值拟合 。
2.
With the help of I H model and Y T model, the luminescence decay curve of 3H 4 of Tm 3+ was fitted, and the fitted values of corresponding energy transfer interaction parameter C DA and energy migration interaction parameter C DD were calculated.
首先 ,藉助I H ,Y T模型拟合了Tm3+ 的3H4 的发光衰减曲线 ,得到了相应的能量迁移和能量传递 (交叉弛豫3H4 + 3H6 →3F4 + 3F4 )的作用参数CDD和CDA的拟合值。
4)  Energy transfer
能量转移
1.
Study on fluorescence resonance energy transfer between acridine yellow and rhodamine 6G and its application in the determination of vanadium;
吖啶黄-罗丹明6G之间荧光能量转移及其在测定钒中的应用
2.
Effects of Gd~(3+)-Tb~(3+) energy transfer and Tb~(3+) self-sensitization on luminescent properties of Tb~(3+)-doped heavy germanate glasses;
Gd~(3+)Tb~(3+)能量转移与Tb~(3+)自敏化效应对重金属锗酸盐玻璃发光性能的影响
3.
Electrogenerated chemiluminescence detection chlortetracycline based on energy transfer;
能量转移电化学发光分析法测定金霉素
5)  energy drift
能量漂移
1.
The fundamental frequency energy drift phenomenon of the resonance tube′s acoustic field in the thermoacoustic engine was discussed.
从实验上验证了把等截面谐振管变为变截面谐振管有助于对基频能量漂移的抑制。
2.
The drift characteristic of IRFPA is analyzed,and the drift curve is fit to compensate the energy drift.
分析了红外探测器的漂移特性,拟合漂移曲线并对探测器的能量漂移进行补偿。
3.
In the process of measurement, it is found that infrared detector has the character of energy drift, the drift disciplinarians are summarized by experiment.
在测量过程中发现红外探测器存在能量漂移现象,通过实验总结了红外探测器的漂移规律,同时分析了产生漂移现象的原因并提出了漂移补偿的方法。
6)  energy translation
能量平移
补充资料:能量转移
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性质:从唯象学的观点来看,此术语常用来描写分子吸收光的过程,或指由另一分子的激发态所引起的过程。在讨论光学化学机理时,此术语只限于光物理过程,亦即激发态分子(给体)变为较低能态时的失活过程只和它向另一分子(受体)转移能量并使其提升到较高能态有关的过程。此处的激发作用包括电子激发、振动激发、转动激发或平动激发,给体与受体也可以是同一分子的两个组成部分,这种情况下的能量转移过程称为分子内能量转移。

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