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1)  Dirac Hadron
Bose强子
1.
Dynamical Self-Similarity of Strong Interaction and Comparison between Dirac Hadron and Bose Hadron;
强相互作用的动力学自相似性与Dirac强子Bose强子的比较研究
2)  Bose-Einstein condensate
Bose-Einstein凝聚
1.
Attractive nonlinear Schrdinger equation and Bose-Einstein condensate in phase space;
相空间中吸引性非线性Schrdinger方程与Bose-Einstein凝聚
2.
Using the direct perturbation technique,a general unstable chaotic solution was obtained of the Bose-Einstein condensates trapped in one-dimensional tilted optical lattice potential.
运用直接微扰方法求得一维斜光格子势阱中囚禁Bose-Einstein凝聚体的混沌解,并绘出和研究了该系统的动力学相图。
3.
This paper is concerned with a class of nonlinear Schrdinger equations with combined power nonlinearities under a harmonic potential,which describes the attractive Bose-Einstein condensate under a magnetic trap.
该方程描述了在磁场势下具有相互吸引的Bose-Einstein凝聚。
3)  Bose-Einstein correlations
Bose-Einstein关联
4)  Bose-Einstein condensation
Bose-Einstein凝聚
1.
Bose-Einstein condensation is a new and peculiar matter-form, and has become one of the hotspots of research in contemporary physics.
Bose-Einstein凝聚是一种崭新的、奇特的物质形态,已成为当代物理学的一个研究热点。
2.
Einstein made Bose’s methods spread particles whose quality is not zero further, and predicted if the temperature is low enough, the phase transition will occur, all boson particles will gather to the lowest level, this is the Bose-Einstein Condensation.
Einstein进一步将Bose的理论推广到有质量的粒子,并预言了在温度足够低的情况下,将发生相变,全部玻色子会凝聚到最低能级上,这就是Bose-Einstein凝聚。
3.
This paper focuses on the theoretical discussion about Bose-Einstein condensation,mainly including four parts:(1) the characteristic of chemical potential of Bose gas;(2) condensation phenomenon;(3) macroscopic nature of Bose gas after condensation;(4) the physical formation condition of condensation.
本文是对Bose-Einstein凝聚问题的理论探讨,主要包括四个方面:(1)玻色子的化学势的特性(2)玻色凝聚现象(3)玻色凝聚发生后玻色气体的宏观性质(4)玻色凝聚形成的物理条件。
5)  Bose integrals
Bose积分
6)  Bose-Einstein condensates
Bose-Einstein凝聚
补充资料:强子
强子
hadron

   参与强相互作用的粒子。已发现的粒子绝大多数是强子。自旋为!!!Q0367_1整数倍的强子称为介子,自旋为!!!Q0367_2半奇数倍的强子称为重子。
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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