论文标题
哈密顿的形式主义,用于与非亚洲互动的等离子体中的Bose激发
Hamiltonian formalism for Bose excitations in a plasma with a non-Abelian interaction
论文作者
论文摘要
我们已经开发了用于集体纵向极化无色激发(等离子体)在高温gluon等离子体中的集体纵向极化的理论,该理论使用一般形式主义在具有分散的非线性介质中构建波浪理论,该理论是由V.E开发的。 Zakharov。在这种方法中,我们明确获得了一种特殊的规范转换,这使得可以简化软gluon激发相互作用的哈密顿量,从而得出一种新的有效的哈密顿量。此处开发的方法用于构建玻尔兹曼型动力学方程,该方程描述了Gluon等离子体中集体纵向极化激发的弹性散射以及所谓的非线性降水阻尼的效果。我们对使用经典汉密尔顿理论确定的等离子体色谱相互作用的有效幅度进行了详细的比较,并与在高温量子染色体动力学框架中计算出的相应基质元件。这使我们能够确定本研究中描述的纯经典方法的适用性限制。
We have developed the Hamiltonian theory for collective longitudinally polarized colorless excitations (plasmons) in a high-temperature gluon plasma using the general formalism for constructing the wave theory in nonlinear media with dispersion, which was developed by V.E. Zakharov. In this approach, we have explicitly obtained a special canonical transformation that makes it possible to simplify the Hamiltonian of interaction of soft gluon excitations and, hence, to derive a new effective Hamiltonian. The approach developed here is used for constructing a Boltzmann-type kinetic equation describing elastic scattering of collective longitudinally polarized excitations in a gluon plasma as well as the effect of the so-called nonlinear Landau damping. We have performed detailed comparison of the effective amplitude of the plasmon-plasmon interaction, which is determined using the classical Hamilton theory, with the corresponding matrix element calculated in the framework of high-temperature quantum chromodynamics; this has enabled us to determine applicability limits for the purely classical approach described in this study.