This is the newest result in the high - energy heavy ion field 这是本工作在高能重离子领域中首次报导的最新的实验分析结果。
To study the formation of a quark gluon plasma , it is of crucial importance to undeistand in detail the collision dynamics 在高能重离子对撞实验( rhic及lhc )探索夸克胶子等离子体( qgp )的过程中,对碰撞动力学的详细了解是至关重要的。
One of important purposes of high - energy heavy ion physics is to study strongly interacting dynamics in high energy density and high temperature environment 高能重离子物理的重要目的之一是研究极高能量密度和极高温度环境中强相互作用的动力学性质。
The following phenomenon is desired to seen : with the increase of colliding energy , the net baryon number tends to be zero in the mid - rapidity region 人们渴望在高能重离子碰撞中看到:随着对撞能量的升高,在反应的中心快度区出现净重于为零的现象。
It is indicated that the radius parameter is insensitive to the spatial shape of the edge zone of source and is mainly affected by the size of the central zone of pions emitted in high energy heavy - ion collisions 结果表明,半径参数主要取决于高能重离子碰撞中多数介子产生的中间区域;对产生介子的边缘区域的空间分布形状不敏感。
高能: high energy重离子: heavy ion高能重离子反应堆: high energy heavy ion nuclear reactor高能重离子加速器: bevilac ||重离子: heavy ion◇重离子回旋加速器 heavy ion cyclotron; 重离子加速器 heavy ion acceleration; 重离子聚变 heavy ion fusion高能重子: high energy baryon超重离子: superheavy ion三重离子: ion triplet四重离子: quadruple ion重离子反应: heavy ion reaction重离子辐照: heavy ion irradiation重离子含量: heavy ion content重离子轰击: heavy ion bombardment重离子加速: heavy ion acceleration重离子溅射: heavy ion sputtering重离子聚变: heavy ion fusion重离子科学: heavy ion science重离子疗法: heavy ion therapy重离子束: heavy ion beam重离子物理: heavy-ion physics多电荷重离子: multiply charged heavy ions重离子的吸收: heavy ions absorption of重离子对撞机: relativistic heavy ion collider; rhic重离子核反应: heavy ion induced nuclear reaction; heavy ion nuclear reaction重离子核化学: heavy ion nuclear chemistry