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1)  two-atom dipole amplitude-squared squeezing
双原子偶极振幅平方压缩
1.
The two-atom dipole amplitude-squared squeezing in a two different atoms interacting with two-mode cavity field model;
非等同两个原子与双模腔场相互作用模型中双原子偶极振幅平方压缩
2.
The two-atom dipole amplitude-squared squeezing in a system of a two-mode vacuum field interacting with two coupled atoms was studied.
研究了双模真空场与两个耦合二能级原子相互作用系统的双原子偶极振幅平方压缩
2)  atomic dipole amplitude-squared squeezing
原子偶极振幅平方压缩
3)  atomic dipole amplitude squared squeezing
原子偶极平方压缩
1.
This paper studied the atomic dipole amplitude squared squeezing in the system of a three level atom interacting with a single mode radiation vacuum field.
运用数值计算方法讨论了辐射场与原子的 2种耦合常数的相对大小以及原子的初始相干性对原子偶极平方压缩的影响 。
4)  double-atom dipole squeezing
双原子偶极压缩
1.
The influence of atomic motion perpendicularity to the axes of resonant cavity and initial states of the system on the atomic population inversion and double-atom dipole squeezing are analysed numerically.
通过数值计算,分析了原子垂直于腔轴的运动以及系统初态对双原子能级布居数反转和双原子偶极压缩的影响。
5)  amplitude-squared squeezing
振幅平方压缩
1.
When the light field was initially in the coherent state and the atom was in the excited state,the effect of amplitude-squared squeezing of light field in the nonliner model containing time was discussed.
讨论了当初始光场处于相干态,原子处于激发态时,非线性J-C模型中光场的振幅平方压缩效应。
2.
The superposition states, which are composed of q-vacuum state and q-coherent state, are presented, and their amplitude-squared squeezing properties are disscused.
构造了一种由q变形相干态与q变形真空态叠加而成的态,研究了它的振幅平方压缩性质,借助数值计算方法讨论了叠加系数、变形参数对振幅平方压缩特性的影响。
3.
Their amplitude-squared squeezing effect, orthonormalized property, unitary property and completeness relations are discussed.
构造出了有限维Hilbert空间Roy型奇偶非线性相干态,讨论了它们的正交归一完备性和振幅平方压缩效应。
6)  amplitude squared squeezing
振幅平方压缩
1.
It is found that, in some ranges of |β|, the squeezing only exists in the new even nonlinear coherent state, and the amplitude squared squeezing and .
结果表明 ,与通常的奇偶相干态不同 ,在参数 |β|变化的某些范围内 ,只有偶非线性相干态可以存在压缩效应 ,而振幅平方压缩和反聚束效应在这两个态中均可以呈
补充资料:“质子-电子偶极-偶极”质子弛豫增强


“质子-电子偶极-偶极”质子弛豫增强


  物理学术语。原子核外层中不成对的电子质量小,但磁动性很强,可使局部磁场波动增强,促使氢质子弛豫加快,从而使T1和T2缩短,这种效应即为PEDDPRE。过渡元素和镧系元素大部分在d和f轨道有多个不成对电子,所以其离子往往具有PEDDPRE,可用来作顺磁性对比剂,如钆(Gd)。Gd在外层有7个不成对电子,具有很强的顺磁性。
  
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