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2 + 1维相对论量子临界点附近的热力学

Thermodynamics in the vicinity of a relativistic quantum critical point in 2+1 dimensions.

作者信息

Rançon A, Kodio O, Dupuis N, Lecheminant P

机构信息

James Franck Institute and Department of Physics, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jul;88(1):012113. doi: 10.1103/PhysRevE.88.012113. Epub 2013 Jul 15.

DOI:10.1103/PhysRevE.88.012113
PMID:23944420
Abstract

We study the thermodynamics of the relativistic quantum O(N) model in two space dimensions. In the vicinity of the zero-temperature quantum critical point (QCP), the pressure can be written in the scaling form P(T)=P(0)+N(T(3)/c(2))F(N)(Δ/T), where c is the velocity of the excitations at the QCP and |Δ| a characteristic zero-temperature energy scale. Using both a large-N approach to leading order and the nonperturbative renormalization group, we compute the universal scaling function F(N). For small values of N (N</10) we find that F(N)(x) is nonmonotonic in the quantum critical regime (|x|</1) with a maximum near x=0. The large-N approach-if properly interpreted-is a good approximation both in the renormalized classical (x</-1) and quantum disordered (x>/1) regimes, but fails to describe the nonmonotonic behavior of F(N) in the quantum critical regime. We discuss the renormalization-group flows in the various regimes near the QCP and make the connection with the quantum nonlinear sigma model in the renormalized classical regime. We compute the Berezinskii-Kosterlitz-Thouless transition temperature in the quantum O(2) model and find that in the vicinity of the QCP the universal ratio T(BKT)/ρ(s)(0) is very close to π/2, implying that the stiffness ρ(s)(T(BKT)(-)) at the transition is only slightly reduced with respect to the zero-temperature stiffness ρ(s)(0). Finally, we briefly discuss the experimental determination of the universal function F(2) from the pressure of a Bose gas in an optical lattice near the superfluid-Mott-insulator transition.

摘要

我们研究二维空间中相对论量子O(N)模型的热力学。在零温量子临界点(QCP)附近,压力可以写成标度形式P(T)=P(0)+N(T³/c²)F(N)(Δ/T),其中c是QCP处激发的速度,|Δ|是一个特征零温能量标度。使用大N近似到主导阶以及非微扰重整化群,我们计算了普适标度函数F(N)。对于N的小值(N≲10),我们发现在量子临界区域(|x|≲1)中F(N)(x)是非单调的,在x = 0附近有一个最大值。大N近似——如果正确解释——在重整化经典区域(x≲ -1)和量子无序区域(x≳1)都是一个很好的近似,但无法描述F(N)在量子临界区域的非单调行为。我们讨论了QCP附近各种区域的重整化群流,并在重整化经典区域将其与量子非线性西格玛模型联系起来。我们计算了量子O(2)模型中的贝雷津斯基-科斯特利茨- Thouless转变温度,发现在QCP附近普适比率T(BKT)/ρs(0)非常接近π/2,这意味着转变处的刚度ρs(T(BKT)⁻)相对于零温刚度ρs(0)仅略有降低。最后,我们简要讨论了从超流-莫特绝缘体转变附近光学晶格中玻色气体的压力实验确定普适函数F(2)的问题。

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