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1)  high energy AA collision
高能核核碰撞
1.
Through high energy AA collision this condition can be reached.
在当前的实验条件下,已经可以达到理论上预言的产生QGP物质的温度和能量密度的临界值,这是通过高能核核碰撞实现的,巨大的粒子动能聚集在碰撞区,并转化为热能,形成极端的高温高密环境,迫使夸克和胶子从禁闭的强子态相变到解禁闭的QGP态。
2)  High-energy unclear collisions
高能核碰撞
3)  high energy nucleus-nucleus collision
高能核-核碰撞
1.
One of the most important characteristics of high energy nucleus-nucleus collisions is the large amount of energy involved .
高能核-核碰撞最主要的特征之一就是涉及的能量巨大。
4)  intermediate energy heavy ion collision
中能核-核碰撞
5)  collision between high energy proton and nucleus
高能质子同核的碰撞
6)  nucleus-nucleus collisions
核-核碰撞
1.
Particle pseudorapidity distribution in nucleus-nucleus collisions at high energy;
高能核-核碰撞末态产生粒子的赝快度分布
2.
Based on our previous work, leading particle effects in nucleus-nucleus collisions at the Alternating Gradient Synchrotron (AGS) and Relativistic Heavy Ion Collider (RHIC) energies are uniformly analyzed by using the two-cylinder model.
在总结双柱模型计算结果的基础上,用该模型对交变梯度同步加速器(AGS)和相对论性重离子对撞机(RHIC)能区核-核碰撞中的领头粒子效应进行了统一分析。
3.
The overlapping cylinder model(OCM) is used in this letter to describe the rapidity (or pseudorapidity) distributions of charged particles produced in nucleus-nucleus collisions at high energies.
应用重叠柱模型描述了高能核-核碰撞中带电粒子的快度(或赝快度)分布。
补充资料:高能
具有很高能量的:~粒子丨~食品。
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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