Analyzing the transport coefficients and observables of a rotating QGP medium in kinetic theory framework with a novel approach to the collision integral

IF 4.8 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS
Shubhalaxmi Rath, Sadhana Dash
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Abstract

In the present work, we have studied how the rotation of the QGP medium affects the transport coefficients and observables in heavy ion collisions. For the noncentral collisions, although most of the angular momentum gets carried away by the spectators, there still remains a finite angular momentum with a finite range of angular velocity, which thus incites rotation in the produced matter. As a result, various properties of the QGP medium including its transport properties are most likely to be modulated by the rotation. We have calculated the transport coefficients and observables, such as the electrical conductivity, the thermal conductivity, the Knudsen number, the elliptic flow, the specific heat at constant pressure, the specific heat at constant volume, the trace anomaly, the thermal diffusion constant and the isothermal compressibility using the kinetic theory to see the effect of rotation on them. In particular, we have used the novel relaxation time approximation for the collision integral in the relativistic Boltzmann transport equation to derive the transport coefficients and compared them with their values in the relaxation time approximation within the kinetic theory approach in conjunction with the finite angular velocity. We have found that the emergence of angular velocity enhances the flow of charge and heat in the medium. Further, as compared to the relaxation time approximation, the electrical and the thermal conductivities have smaller values in the novel relaxation time approximation and these differences between the conductivities in the said approximations are more pronounced at high temperatures than at low temperatures. Furthermore, all the aforesaid observables are found to be sensitive to the rotation of the QGP medium.

用一种新的碰撞积分方法分析旋转QGP介质的输运系数和观测值
在本工作中,我们研究了QGP介质的旋转如何影响重离子碰撞中的输运系数和观测值。对于非中心碰撞,虽然大部分角动量被旁观者带走了,但仍然存在一个有限的角动量和有限范围的角速度,从而激发了产生物质的旋转。因此,QGP介质的各种性质,包括其输运性质,很可能被旋转调制。利用动力学理论计算了输运系数、电导率、导热系数、Knudsen数、椭圆流、定压比热、定容比热、微量异常、热扩散常数和等温压缩率等观测值,观察了旋转对它们的影响。特别是,我们使用了相对论玻尔兹曼输运方程中碰撞积分的新的弛豫时间近似来推导输运系数,并将它们与结合有限角速度的运动论方法中的弛豫时间近似中的值进行了比较。我们发现角速度的出现增强了介质中电荷和热量的流动。此外,与松弛时间近似相比,在新的松弛时间近似中,电导率和热导率具有较小的值,并且在所述近似中电导率之间的这些差异在高温下比在低温下更为明显。此外,发现上述所有观测值都对QGP介质的旋转敏感。
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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
期刊介绍: Experimental Physics I: Accelerator Based High-Energy Physics Hadron and lepton collider physics Lepton-nucleon scattering High-energy nuclear reactions Standard model precision tests Search for new physics beyond the standard model Heavy flavour physics Neutrino properties Particle detector developments Computational methods and analysis tools Experimental Physics II: Astroparticle Physics Dark matter searches High-energy cosmic rays Double beta decay Long baseline neutrino experiments Neutrino astronomy Axions and other weakly interacting light particles Gravitational waves and observational cosmology Particle detector developments Computational methods and analysis tools Theoretical Physics I: Phenomenology of the Standard Model and Beyond Electroweak interactions Quantum chromo dynamics Heavy quark physics and quark flavour mixing Neutrino physics Phenomenology of astro- and cosmoparticle physics Meson spectroscopy and non-perturbative QCD Low-energy effective field theories Lattice field theory High temperature QCD and heavy ion physics Phenomenology of supersymmetric extensions of the SM Phenomenology of non-supersymmetric extensions of the SM Model building and alternative models of electroweak symmetry breaking Flavour physics beyond the SM Computational algorithms and tools...etc.
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