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首页> 外文期刊>The journal of high energy physics >Effects of fluid velocity gradients on heavy quark energy loss
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Effects of fluid velocity gradients on heavy quark energy loss

机译:流体速度梯度对重型夸克能量损失的影响

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A bstract We use holographic duality to analyze the drag force on, and consequent energy loss of, a heavy quark moving through a strongly coupled conformal fluid with non-vanishing gradients in its velocity and temperature. We derive the general expression for the drag force to first order in the fluid gradients. Using this general expression, we show that a quark that is instantaneously at rest, relative to the fluid, in a fluid whose velocity is changing with time feels a nonzero force. And, we show that for a quark that is moving ultra-relativistically, the first order gradient “corrections” become larger than the zeroth order drag force, suggesting that the gradient expansion may be unreliable in this regime. We illustrate the importance of the fluid gradients for heavy quark energy loss by considering a fluid with one-dimensional boost invariant Bjorken expansion as well as the strongly coupled plasma created by colliding sheets of energy.
机译:Bstract我们使用全息型二元性来分析拖曳力,随后的能量损失,通过强烈耦合的共形流体,其速度和温度的非消失的梯度移动。我们从流体梯度中的第一顺序推导出拖曳力的一般表达。使用这种普遍表达式,我们表明,相对于流体在速度随时间变化的流体中,瞬间静置的夸克感觉是非零力。并且,我们表明,对于移动超级相对主义的夸克,第一阶梯度“校正”变得大于Zeroth阶拖曳力,表明在该方案中可能是不可靠的梯度扩展。我们通过考虑具有一维增压不变的Bjorken膨胀的流体以及通过碰撞能量产生的强耦合等离子体来说明流体梯度对重型夸克能量损失的重要性。

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