量子化方法

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量子化方法量子化方法
  1. 用正则量子化方法将介观互感容感耦合双谐振电路量子化。

    A mesoscopic double resonance circuit with mutual inductance and capacitance-inductance coupling was quantized using canonical quantization method .

  2. 以往从电荷的经典运动方程出发,通过变量代换的正则量子化方法,相当于将这里高温极限的结果应用到了低温情况。

    The former canonical quantization method , which starts from the classical equation of the electric charge and makes some transformations , this corresponds to applying the result of high temperature limit to the lower temperature case .

  3. 用背景场量子化方法计算WS模型的弱耦合β函数

    Calculation of the weak coupling β function in the weinberg-salam model using background field quantization

  4. 采用二次量子化方法和酉变换讨论了O3分子在激光场中的多光子激发。

    The multiphoton excitation of O 3 molecules in laser fields is discussed using the second quantization and unitary transformations .

  5. 用EBK量子化方法对原子能级的计算

    Calculation of the atomic energies by EBK quantization procedure

  6. 本文利用路径积分量子化方法,计算了两个平行的、理想的金属板之间,内部费米子单圈图对Casimir力的贡献。

    The contribution of internal fermion one-loop to the Casimir energy between two parallel conducting are calculated by using the Feynman path integral method .

  7. 本文把随机量子化方法应用到格点规范理论中,建立了格点上U(N)、SU(N)规范群的链变量及圈变量的Langevin方程。

    The method of stochastic quantization is applied to the lattice gauge field theory and the Langevin equations for the link and Wilson loop variables are established for the U ( N ) and SU ( N ) cases .

  8. 本文利用背景场量子化方法进行了Weinberg-Salam模型中弱耦合β函数的单圈计算。

    The one-loop B.function for the weak coupling constant is calculated in the Weinberg-Salam model by using background-fleld quantization .

  9. 电磁场正则量子化方法的协变性证明

    The Proof of Covariance for Canonical Quantization 's Approach to Electromagnetic Field

  10. 费密面与电化学(二)&二次量子化方法

    Electrochemistry on Fermi Surfaces ( 2 ) & Methods of Second Quantisation

  11. 最后,我们用变形量子化方法处理了两个应用广泛的物理模型&耦合振子和阻尼振子。

    At last , we study two physical models including coupled oscillators and damped oscillators .

  12. 泛函分析和算子代数;量子化方法和路径积分;变分技术。

    Functional Analysis and Operator Algebras ; Quantization Methods and Path Integration ; Variational Techniques .

  13. 应用当代物理学中的量子化方法,将日&地空间量子化。

    The quantum method of the modern physics is used to the space between the Sun and Earth .

  14. 本文叙述路径积分量子化方法及其与正则量子化的等价性;

    This paper gives an account of the method of the path integral quantization and the importance of the canonical .

  15. 应用路径积分量子化方法研究谐振子体系,并得出相关结论。

    The system of the linear harmonic oscillator is studied with the method mentioned above and the related conclusion is reached .

  16. 基于对生物复眼几何结构的模拟,提出一类新颖而有效的数据处理方法&方向量子化方法。

    A new data representation method called direction quantization representation is presented by simulating a simplified geometric model of biological compound eye .

  17. 从铁磁畴的能量方程出发,利用正则量子化方法和么正变换技术,解析地求得了磁畴量子化运动的波函数。

    By the aid of the linear quantum transformation theory , we derive the analytic expression of the partition function for the quadratic systems .

  18. 在背景场方案下,用协变量子化方法求出了含耦合标量场的量子引力的单圈发散抵消项。

    Using the background field method , find the one-loop divergence counter term of quantum gravity coupling scalar field in the framework of covariant quantization .

  19. 利用色散吸收介质中电磁场的正则量子化方法,研究等离子体加载对色散吸收介质光腔系统量子性质的影响。

    The influence of the plasma loading on the quantum character of absorbing and dispersive cavity is investigated by the canonical quantum method of the electromagnetic field .

  20. 应用二次量子化方法,较为简捷地得出费米子对的能级公式,并计算了超导电子对的能量。

    This paper , using theoretical method of second quantization , obtains more brifely the form of Fermion pairs energy level , and calculates energy of Cooper pair .

  21. 借助系统经典格林函数,运用正则量子化方法,对平面分区均匀色散吸收介质中电磁场进行量子化。

    The photic field in the plane divisional uniform absorbing and dispersive dielectrics is quantized by the canonical quantum theory and the classical Green 's function of the system .

  22. 采用相互作用绘景,用完全量子化方法研究两个两能级原子与腔场的相互作用中场的相关性质及压缩效应,揭示了多光子过程对上述性质的影响。

    TO study the coherent property and squeezed phenomenon of field in two two-level atoms interacting with cavity field , and discuss the influence on above property by multi photon process .

  23. 第四章在实验的基础上对表面等离子体激元量子化的方法进行了研究。

    In chapter four , the quantization method of surface plasmons polaritons has been studied .

  24. 该文在相互作用绘景中,用完全量子化的方法研究了压缩相干态与两个耦合二能级原子相互作用过程中,系统光子数的统计演化规律;

    In this paper , the photon statistical evolution in the system of two coupling two-level atoms interacting with squeezed coherent-state field is studied by the interacting picture by means of quantum theory .

  25. 第二种方法是应用“二次量子化”的方法来计算,这种方法不需要用对易关系,计算简便。

    For the latter , one does not need to use any commutation relation , thus it is very convenient .

  26. 微碳纤电极与细胞量子化分泌的记录方法

    Micro carbon fiber electrode for recording of quantal secretion in single cell

  27. 该文基于介观电路中电荷应是量子化的这一事实,应用正则量子化方法给出了介观耗散电容耦合电路的量子化方法和库仑阻塞条件。

    Based on the fact that the charge is quantized in a dissipative mesoscopic capacitance coupling circuit , the quantum theory of the mesoscopic capacitance coupling circuit and the condition for Coulomb blockade ( CCB ) are given by using canonical quantization method .

  28. 在第四章,基于电荷的量子化特征,给出了介观电容耦合RLC电路的量子化方法,研究了介观电容耦合RLC电路的库仑阻塞效应。

    In chapter 4 , regarding the discreteness of electric charge , we present the method of the mesoscopic capacitance coupling RLC circuit and studied the Coulomb blockade effect in the circuit .