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1)  quantum zero point fluctuation
量子零点涨落
2)  the fluctuations at zero-point
零点涨落
3)  Quantum fluctuation
量子涨落
1.
Quantization and quantum fluctuations in a damped time-dependent inductive coupled electric circuit;
含时阻尼电感耦合电路的量子化和量子涨落
2.
Quantum fluctuation of a mesoscopic inductance-resistance coupled circuit with power source in squeezed vacuum state;
压缩真空态下有源电感耦合电路电荷和电流的量子涨落(英文)
3.
Antithetic property of quantum fluctuations in mesoscopic second order circuit;
介观二阶电路量子涨落的对偶性
4)  quantum fluctuations
量子涨落
1.
Thequantum fluctuations of the charge and current of the circuit in coherent state werestudied, the results show that the quantum fluctuations in the two circuits arecorrelated with each other, and the results are analysed and discussed.
提出了电感耦合电路的一种量子化方案,研究了电路中电荷和电流在相干态下的量子涨落,结果表明两个回路中的量子涨落是相互关联的,并对结果进行了讨论。
2.
On the basis of the charge discreteness,the quantum fluctuations fo the charge,current and energy in the mesoscopic metal dual rings are calculated by the minimum shift operator.
基于电荷离散化的事实,运用最小平移算符的性质,计算介观金属双环系统中电荷、电流以及能量的量子涨落,研究影响量子涨落的因素。
3.
On the basis of the charge quantization,the quantum fluctuations of the charge,the current and the energy in the dissipative mesoscopic circuit are calculated by the character of the minimum shift operator.
基于电荷离散化的事实,应用最小平移算符的性质,计算耗散介观电路中电荷、电流及能量的量子涨落。
5)  zero-point fluctuations of the electromagnetic field
电磁场零点涨落
1.
We apply quantum electrodynamics to calculate the zero-point fluctuations of the electromagnetic field in a two-layer dielectric material and discuss the variations of the spontaneous emission rate of an atom.
利用量子电动力学计算了二层介质中电磁场零点涨落,并用原子物理中发展成熟的闭合轨道理论探讨了原子自发辐射速率随发光原子离开界面的距离的增加而变化的特性。
2.
We apply quantum electrodynamics to calculate the zero-point fluctuations of the electromagnetic field in the dielectric slab and discuss the variations of the spontaneous emission rate of an atom with the thickness of the slab,using closed-orbit theory.
我们利用量子电动力学计算了三层平行介质板中电磁场零点涨落,并用原子物理中发展成熟的闭合轨道理论探讨了原子自发辐射速率随介质板厚度的变化特性。
6)  zero-point fluctuation of the electromagnetic field
零点电磁场涨落
补充资料:单量子阱(见量子阱)


单量子阱(见量子阱)
single quantum well

单且子阱sillgle quantum well见量子阱。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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