• Our research results show that the condition for Coulomb blockade in the dissipative mesoscopic circuit is related not only to the non-dissipative component, but also to the dissipative resistance.

    研究结果表明押存在耗散元件介观电路库仑阻塞效应不仅电路的非耗散有关而且与耗散电阻有关。

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  • The quantum effects of the mesoscopic circuit with capacitive coupling under the excited states of squeezed vacuum states are investigated by quantizing the circuit and diagonalizing its Hamiltonian.

    通过量子化电容耦合电路对角化电路哈密顿量研究介观电路压缩真空激发态量子力学效应

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  • Mesoscopic double resonance mutual inductance and capacitance coupling circuit is quantized by the method of harmonic oscillator quantization.

    介观互感电容耦合电路模耦合谐振子处理,将其量子化

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  • Mesoscopic double resonance circuit with complicated coupling is quantized by the method of harmonic oscillator quantization and linear transformation.

    介观复杂耦合电路模耦合谐振子处理,将其量子化

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  • This paper mainly investigates dynamic behavior of charge and current in a mesoscopic LC circuit with discrete charge by considering coupling energy of the mesoscopic capacitor.

    主要通过考虑电容耦合离散电荷介观LC电路中的电荷电流动力学行为进行了研究

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  • The evolution of quantum state with time in the time-dependent mesoscopic LC circuit containing source is studied in this paper.

    研究LC电路外加电源作用下,系统量子时间演化分析了实现压缩态的动力学过程。

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

    正则量子化方法将观互感耦合谐振电路量子化

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  • By making use of the quantum canonic ensemble theory, the quantum fluctuations of a mesoscopic RLC circuit in the mixed state have been studied.

    利用量子正则系理论研究介观rlc电路混合态下量子涨落

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  • In a definite temperature, the system will be in a mixed state, further, we obtain the quantum fluctuations in mesoscopic LC circuit with a power source in a finite temperature.

    确定温度下,系统处在混合进一步得到有限温度下含LC电路量子涨落

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  • Starting from the classical equation of motion, the mesoscopic parallel LC circuit is quantized.

    经典LC并联电路运动方程出发介观LC并联电路量子化。

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  • The quantum fluctuations of mesoscopic RLC circuit in vacuum state and in thermal vacuum state are considered.

    真空真空态下讨论介观RLC电路量子涨落

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  • For different states of the mesoscopic capacitive coupled electric circuit, reduction of quantum fluctuations induced by the coupling was studied.

    研究了两个分回路电路参数即电容和电感不同对有阻尼耦合电路中量子涨落的影响。

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  • For different states of the mesoscopic capacitive coupled electric circuit, reduction of quantum fluctuations induced by the coupling was studied.

    对于电容耦合电路不同实际状态研究了完全耦合引起量子涨落减小问题。

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  • By extending the thermal field dynamics to the time dependent system, quantum fluctuations of the time dependent mesoscopic LC electric circuit at finite temperature were studied.

    通过动力学推广体系,研究了有限温度观含时LC电路中的量子涨落

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  • The quantization of a general mesoscopic RLC circuit with source by series-mounting is studied by using a new canonical transformation satisfied condition.

    通过正则化变换 ,研究耗散介观电容耦合电路量子化 ,并讨论了系统中电荷和广义电流量子涨落 。

    youdao

  • The quantization of a general mesoscopic RLC circuit with source by series-mounting is studied by using a new canonical transformation satisfied condition.

    通过正则化变换 ,研究耗散介观电容耦合电路量子化 ,并讨论了系统中电荷和广义电流量子涨落 。

    youdao

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