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1)  vacuum state
真空态
1.
On this basic theory,we studied quantum fluctuations of the voltage and current of each branch in vacuum state.
借鉴阻尼谐振子的量子力学处理的研究思想,将介观阻尼LC并联电路量子化,在此基础上研究了真空态下,各支路电流和电压的量子涨落。
2.
With the assumption of the squeezed like state, a new vacuum state was obtained for the coupling system.
采用类压缩态的假设找到了该耦合系统新的真空态 ,其能量比以往工作中量子力学二阶微扰方法给出的能量更低 。
3.
Based upon the quantization of a mesoscopic lossless transmission line, analysis is made for the quantum fluctuations of the current and current gradient of the line in the vacuum state and squeezed vacuum state, especialy for the difference between the quantum fluctuations of the transmission line and LC circuit.
在将介观无损耗传输线量子化的基础上 ,研究了真空态和压缩真空态下传输线中电流和电流梯度的量子涨落 。
2)  permanent vacuum
静态真空
1.
The permanent vacuum is essential condition of the spaceborne Stirling cryocooler which various performance experiments on the ground.
静态真空是星载斯特林制冷机在地面进行各项性能试验的必备条件,它主要由杜瓦和真空保持系统组成。
3)  thermal vacuum state
热真空态
1.
Quantum flunctuations in thermal vacuum state for mesoscopic RLC electric circuit;
介观RLC电路在热真空态下的量子涨落
2.
The quantum fluctuations of mesoscopic RLC circuit in vacuum state and in thermal vacuum state are considered.
真空态和热真空态下讨论了介观RLC电路的量子涨落。
3.
On this basic theory, we have studied quantum fluctuations of the voltage and current of each branch in thermal vacuum state.
在此基础上,研究了热真空态下各支路电流和电压的量子涨落。
4)  vacuum state
真空状态
5)  dynamic vacuum degree
动态真空度
6)  squeezed vacuum state
压缩真空态
1.
Squeezing effects of the photon-added squeezed vacuum states;
增光子压缩真空态的压缩特性
2.
The higher-order squeezing properties for the states generated by excitations on a squeezed vacuum state are studied.
发现θ等于零时这种态中正交分量的2N 阶矩表达式可以化为压缩真空态的2N 阶矩和一个与 m有关的函数相乘的形式。
3.
Based upon the quantization of a mesoscopic lossless transmission line, analysis is made for the quantum fluctuations of the current and current gradient of the line in the vacuum state and squeezed vacuum state, especialy for the difference between the quantum fluctuations of the transmission line and LC circuit.
在将介观无损耗传输线量子化的基础上 ,研究了真空态和压缩真空态下传输线中电流和电流梯度的量子涨落 。
补充资料:单线态-单线态能量转移
分子式:
CAS号:

性质:处于电子激发单线态的能量给体,通过激发能的转移使能量受体处于激发单线态的过程。

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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