说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> 量子性
1)  quantum [英]['kwɔntəm]  [美]['kwɑntəm]
量子性
1.
Electric-optical effect and Compton effect comfirm that light could be described not only in the quantum view, but also in the wave-particle view, which, possensing great significance, is the base of the quantum theory.
光电效应、康普顿效应证实了光具有量子性及波粒二象性,是量子论的基石,具有重要的意义。
2)  quality quantum property
质量量子性
3)  quantum properties
量子特性
1.
It reflects that q-deformed nonlinear action has influence on the quantum coherence and quantum properties.
研究发现,q偏离1的程度越大,q形变对场压缩效应的调控能力越强,反映出q形变的非线性行为对量子相干性的干扰以及对量子特性的影响。
2.
It is the inner reflect that q deformed nonlinear action has influence on the quantum coherence and quantum properties.
数值计算结果表明,q形变对相互作用中场压缩效应有着很强的调制能力,这是q形变非线性行为对量子相干性干扰以及对量子特性影响的内在反映。
3.
It\'s obvious that the above results and the quantum properties in the two-photon J-C model with intensity-independent coupling are different.
这显然跟与强度无关的双光子J-C模型中原子和光场的量子特性不同。
4)  quantum character
量子性质
1.
The electromagnetic field is quantized in absorbing and dispersive dielectrics by the canonical quantum theory and classical Green s function of the system, then, the influence of the loading on the quantum character of absorbing and dispersive cavity is investigated.
利用系统经典格林函数和正则量子理论,对色散吸收介质中电磁场量子化;借此着重研究加载对色散吸收 介质光腔系统量子性质的影响。
2.
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.
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。
3.
The influence of the plasma loading on the quantum character of the absorbing and dispersive cavity is investigated.
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。
5)  quantum degeneracy
量子简并性
1.
Influence of quantum degeneracy on the performance of a Stirling refrigeration cycle;
量子简并性对气体斯特林制冷循环性能的影响
2.
Based on the equation of state of an ideal quantum gas,the expressions of some important performance parameters such as the work output and efficiency of an Otto power cycle working with a quantum gas were derived,which were used to discuss the influence of the quantum degeneracy of the gas and internal irreversibility on the performance of the cycle.
建立了一个一般的不可逆量子奥托热机循环模型,基于量子气体的状态方程,导出以量子气体为工质的奥托热机的效率、输出功等重要性能参数的表达式,以此讨论理想量子气体的量子简并性及内不可逆性对该热机性能的影响,分析了不可逆奥托热机的性能特征。
3.
They are used to discuss the influence of the quantum degeneracy of the Bose gas and the irreversible adiabatic processes on the performance of the cycle.
基于不可逆布雷顿制冷循环模型和理想玻色气体的状态方程 ,导出以玻色气体为工质的布雷顿制冷循环的输入功、制冷系数、制冷量等重要参数的表示式 ,由此讨论玻色气体的量子简并性和不可逆绝热过程对循环性能的影响 ,揭示以玻色气体为工质的不可逆布雷顿制冷循环的一般性能特性 ,从而导出一些重要结论 。
6)  linear quantum codes
线性量子码
1.
Using the relation of simple root cyclic codes and repeat root cyclic codes,the linear quantum codes that can be constructed from quaternary c.
利用单根循环码与重根循环码关系,确定出所有能由短码长的四元循环码构造的线性量子码。
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。
参考词条