• As for larger atomic clocks, current models measure the interaction of microwaves with electrically charged atoms, or ions, to measure one second.

    对于较大原子钟而言,当前方法是以测量带电原子离子发出的微波干涉方法确定秒种的长度。

    youdao

  • However, the interaction energy reveals more than just chemical affinity. It also gives an idea of how volatile an element is, even if only one or two atoms are available.

    这种相互作用能(interactionenergy)不仅能表现出化学亲和力的大小,尚可揭示某种元素挥发性强弱——即便只有一个两个原子

    youdao

  • Therefore, this work has some reference value for probing the interaction mechanism of atoms and molecules.

    对进一步研究原子分子相互作用机制一定参考价值

    youdao

  • Supposing there is no interaction between solute atoms, the feature of dislocation motion and the distribution of solutes are obtained at different external stresses in the dynamic simulation.

    动态模拟假设溶质原子之间没有相互作用得到不同外加应力下位错运动特征溶质原子的分布状态。

    youdao

  • We present a scheme for transferring quantum information, which is based on the nonresonant interaction of two two_level atoms with a single_mode cavity field.

    提出了一量子信息转移方案基于两个耦合二能级原子同时单模场发生大失相互作用实现的。

    youdao

  • From the self consistent equations, we have found that BCS condensation of atoms can't occur in such a repulsive two body interaction Fermi gas of atoms.

    序参量方程发现具有排斥相互作用超冷费米原子气体中,原子的BCS转变可能发生。

    youdao

  • The Hamiltonian solution of two-level atoms interaction with sounding lightwave field is given by using a new method of LLP transformation in solid state physics.

    首次将团体理论中的LLP变换用于处理两能级原子驻波相互作用体系全量子哈密顿量。

    youdao

  • The research has showed that some quantum efFects have appeared in the interaction of light with atoms, especially in the nonlinear process.

    研究发现光场原子相互作用过程会出现某些经典效应

    youdao

  • The boundary between the world of atoms and electrons is dissolving. It seems to be an appropriate moment to declare an age of true interaction has come.

    原子世界电子世界”边界模糊,仿佛宣告一个真正互动时代到来。

    youdao

  • The atomic dipole amplitude squared squeezing in the interaction system of the two identical two level atoms with single mode vacuum field is studied.

    研究全同能级原子单模真空辐射相互作用系统原子的偶极振幅平方压缩效应

    youdao

  • The results show that the atom appears periodically squeezing, and the squeezing properties of atom laser depend closely on both interaction among atoms in BEC and initial squeezing factor of light.

    结果表明:由光场诱导双模原子激光呈现周期性压缩原子相互作用和光初始压缩因子对原子的压缩性质具有重要影响。

    youdao

  • With the increase of the dipole-dipole interaction between atoms, the squeezing effect of light field gradually becomes weak and the squeezing time gradually decreases.

    原子之间偶极-偶极相互作用增加压缩效应逐渐挤压时间逐渐减小

    youdao

  • The results show that the fluctuations of two quadrature components of the atomic laser can be squeezed and the interaction between atoms in BEC is disadvantageous to the squeeze of atomic lasers.

    结果表明原子激光正交分量涨落均压缩玻色-爱因斯坦凝聚原子相互作用不利于原子激光压缩

    youdao

  • The Raman interaction of a pair of two-level atoms with the radiation field is studied.

    研究了能级原子单模辐射腔喇曼相互作用

    youdao

  • This paper investigates the interaction of the atoms and the laser, and discusses the physical mechanisms of the laser cooling.

    本文简要分析了原子相互作用原理以及激光冷却原子物理机制

    youdao

  • The high strength originates from interaction between the two kinds of atoms existing at the interface, i. e. a direct metallurgical bond unperturbed but metallurgical defects.

    检验结果表明,高强结合是由于存在界面金属原子间作用力起到了实质性作用

    youdao

  • Considering two two-level atoms initially in the non-maximally entangled state, one of them is put into an initially empty cavity and resonant interaction occurs.

    考虑两个全同的处在最大纠缠态的双能级原子其中与共振的真空腔场相互作用。

    youdao

  • In chapter 4, laser cooling and trapping and applications of ultracold atoms are reviewed. The beam and atom interaction theory is analyzed.

    第四针对空心光束应用综述了激光原子相互作用的物理机制,分析了空心光束冷却原子的机理以及研究动态。

    youdao

  • We introduce anauxiliary atom in the resonant interaction between a single-mode cavity and atoms, the final state of the auxiliary atom is unchanged.

    提出了一个利用单模腔场原子共振相互作用制备团簇方案,并引入辅助原子

    youdao

  • The interaction between atoms in it are very simple contrasted with the other crystals, due to the full shell structure of the electron maintained by the atoms in rare gas crystal.

    由于稀有气体晶体原子保持了核外壳层电子结构其他晶体材料相比,原子间相互作用非常简单

    youdao

  • The coherent superposition of atomic states leads to the change of properties of interaction lights because of the coupling between the lights and atoms.

    原子相干效应条件下,由于场与原子之间相干耦合导致原子能的相干叠加,因而导致与之作用场特性发生变化

    youdao

  • The spectrum of the cavity field has a lot of information about the interaction between atoms and radiation. In this thesis, we investigate the spectrum of many-atom mazer.

    因为光谱带有原子相互作用重要信息本文的工作集中研究多原子微激射器腔场的光谱性质。

    youdao

  • The effects of the shortrange interaction between hard and soft magnetic phase on the reorientation of the magnetic moment of the interfacial atoms are investigated using a layered model.

    借助状模型,研究相与软磁原子短程交换作用界面原子磁矩取向影响。

    youdao

  • Numerical simulation results show that some nonclassical properties can be enhanced after resonant interaction between the atoms and the cavity and the performance of a selective atomic measurement.

    通过数值模拟发现原子在与共振相互作用选择性探测原子内态,使上述某些经典效应得到明显增强。

    youdao

  • We start from the schrodinger equation, researching on the interaction process of cold atoms system with Raman laser pulse, and then educe the density matrix equation.

    第二章推导出了原子拉曼脉冲激光作用能态分布矩阵以及原子重力场中的传输矩阵。

    youdao

  • We study a pair of two-level atoms reducible density rectangular array when atoms by dipole-dipole interaction are put in a thermal reservoir. Decoherence of atoms is analyzed.

    两个两能级原子置于外部环境()中,计及原子极间相互作用时,通过研究两个原子约化密度矩阵,分析原子状态相干规律。

    youdao

  • We study a pair of two-level atoms reducible density rectangular array when atoms by dipole-dipole interaction are put in a thermal reservoir. Decoherence of atoms is analyzed.

    两个两能级原子置于外部环境()中,计及原子极间相互作用时,通过研究两个原子约化密度矩阵,分析原子状态相干规律。

    youdao

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定