1) qantization phenomenon
量子化现象
2) quantum phenomena
量子现象
1.
Phenomenological phenomena and quantum phenomena belonging to different domains have rather similarities that the concept of phenomena include the activities of appearances,entities themselves and their evolutions.
现象学的现象与量子力学的量子现象属于不同的领域,但是,它们之间具有很大的相似性,表现在显现的活动、显现者本身及其演化都属于现象概念。
3) macroscopic quantum phenomena
宏观量子现象
1.
Josephson devices are therefore excellent systems for demonstrating macroscopic quantum phenomena.
以约瑟夫森结为基础元件的超导约瑟夫森器件,使人们能够控制并测量一个超导体的位相和库珀对数目,因此是研究宏观量子现象的理想系统。
2.
Among many macroscopic quantum phenomena,MRT,which combines two of the most distinctive quantum phenomena-tunneling and energy level-quantization together and does not involve excitation by high frequency fields,is perhaps the strongest evidence demonstrating quantum nature of macroscopic variables.
在众多已观察到的宏观量子现象中,宏观共振隧穿结合了能级分立和隧穿这两个最具特征的量子现象。
4) image quantization
图象量子化
5) quantum collapse and revival phenomenon(CR phenomenon)
量子坍塌复苏现象(CR现象)
6) second quantization representation
二次量子化表象
1.
After exploring the properties of orbital spins in an identical particle system in the second quantization representation,the conditions are given for regarding the orbital spins as the particle spins.
对于带自旋的全同粒子系,讨论了二次量子化表象中“轨道自旋”的性质,给出了将它们等效为粒子自旋的条件。
补充资料:宏观量子现象(macroscopicquantumphenomena)
宏观量子现象(macroscopicquantumphenomena)
物质的微观量子力学描述的微观粒子运动性质可在宏观尺度上呈现的现象称宏观量子现象,或宏观量子效应,即宏观范围上的量子效应。例如量子力学描绘的超导现象和超导电性在宏观尺度上呈现的迈斯纳效应,磁通量子化和约瑟夫森隧道效应等都可称为宏观量子现象。又如液体HeⅡ和液体3He呈现的超流现象也是宏观量子现象。
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