Therefore in terms of relativistic heavy ion collisions it is possible for quark and gluon to deconfine in wider range and form quark - gluon plasma . the initial consideration of j / ? suppression in deconfined medium is based on color screening 相对论性重离子碰撞实验是用高能加速器把重离子加速到很高能量实现重离子与重离子的碰撞,从而有可能在一个相对较大的范围解除夸克、胶子的禁闭,形成qgp 。
In simulations , all important phenomena , such as non - neutral sheath widening near cathode , cathode electron emitting , current channel migrating to the load side of the plasma , ion accelerating toward cathode and magnetic insulation of cathode emitting electrons etc , have been observed and depict the internal physics of this device . also presented is the influence of cathode emitted electrons on phenomena in the conduction processes of pegs . the simulation results show , without cathode emitted electrons , rapid magnetic field penetration takes place only in region near the cathode , with cathode emitted electrons , magnetic field penetration takes place in all plasma region 诊断发现了阴极表面非中性鞘层的形成、阴极电子发射、电流通道的漂移、等离子体离子加速以及阴极电子磁隔离等物理现象,揭示了这一断路器件的物理机制;分析了阴极电子对peos导通过程中的物理现象的影响,模拟结果显示:忽略阴极电子作用,磁场渗透现象主要出现在阴极表面区域,考虑阴极电子作用,磁场渗透现象出现在整个等离子体区域。
离子: ion加速: quicken; speed up; accelerat ...离子加速管: ion accelerating tube离子加速计: ion accelerometer离子加速器: ion accelerator; ionic accelerator重离子加速: heavy ion acceleration等离子加速器: plasma accelerator负离子加速器: negative ion acceleration; negative ion accelerator离子加速电压: ion accelerating voltage正离子加速器: positive ion accelerator; positive-ion accelerator重离子加速器: heavy ion accelerator; heavy particle accelerator高能重离子加速器: bevilac ||强流多透镜离子加速器: strong current multi lens ion accelerator摆子加速计: pendulous accelerometer德子加速器: desy电子加速器: electron accelcrator; electron accelerator; electron-accelerating device; microtron; rebatron; rumbatron分子加速器: moletron粒子加速: particle acceleration粒子加速器: atom smasher; corpuscular accelerator; partial accelerator; particle accelerators; tevatron原子加速器: atom-smasher; atomic accelerator质子加速器: bevatron; proton accelerator中子加速器: neutron accelerator等离子加工: plasma machining; pm等离子加热: plasma heating; plasmaheating离子加工: ion machining