1) two level atom absorber
二能级原子吸收体
2) two-level atom
二能级原子
1.
The entanglement states transfer and preservation in the process of two-level atoms interacting with multi-mode light fields;
多模光场与二能级原子相互作用的纠缠交换与保持
2.
Flow equations for light field interacting with two-level atoms;
二能级原子与光场相互作用模型的流方程解法
3.
A two-level atom in a cavity with a moving mirror;
边界振动的微腔中的二能级原子
3) two level atom
二能级原子
1.
The field entropy evolution of the two level atom interacting with a single mode coherent light field;
二能级原子与单模光场相互作用系统的量子场熵演化特性
2.
We have studied the properties of the spontaneous emission from a two level atom embedded in two band photonic crystals.
研究了双能带三维光子晶体中二能级原子自发辐射的性质 。
3.
In this paper,interacting of two level atom with phase coherent states is studied by use of the Jayness-Cummings model transition probability between every two levels of atom with phase coherent states for radiation field interacting is also studied.
运用J C模型研究了二能级原子与位相相干态光场的相互作用 ,以及光场 -原子体系内部状态间的跃迁几率 。
4) moving two-level atom
运动二能级原子
1.
Radiation squeezing effect in the system of the squeezed vacuum field interacting with a moving two-level atom;
压缩真空场与运动二能级原子相互作用系统的光场压缩效应
2.
Quantum entanglement in the interaction between squeezing vacuum state field and moving two-level atom;
压缩真空场与运动二能级原子相互作用的量子纠缠
5) two levels atomic system
二能级原子系统
1.
The interaction between mixed mode optical field and two levels atomic system, has been analyzed, analyses the effect among the different modes optical field in the mixed mode optical field has been analyzed too.
分析了混合模光场与二能级原子系统的相互作用;混合模光场中各模间的影响;并尝试给出混合模光场与二能级原子系统相互作用的几何图像。
6) two two-level atoms
两个二能级原子
1.
We have investigated the coherence of resonance fluorescence for a coherently driven two two-level atoms coupled to a single-mode cavity in the bad cavity limit.
研究了置于光腔中的两个二能级原子,在强相干场驱动下的共振荧光光场的辐射场相干性质,发现在坏腔条件下,可以通过调节光腔与相干场的频率来提高一阶可见度和减小二阶关联函数。
补充资料:电热原子化原子吸收光谱法
分子式:
CAS号:
性质:又称高温炉原子吸收光谱法。利用低压大电流将石墨管、石墨棒、金属丝或金属舟加热到2000~3000℃,使置于其上的试样蒸发并转化为基态原子。由于其对特征辐射吸收,测量待测元素原子吸收信号,从而求出试样中待测元素的含量。
CAS号:
性质:又称高温炉原子吸收光谱法。利用低压大电流将石墨管、石墨棒、金属丝或金属舟加热到2000~3000℃,使置于其上的试样蒸发并转化为基态原子。由于其对特征辐射吸收,测量待测元素原子吸收信号,从而求出试样中待测元素的含量。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条