论文标题

Chern-Simons中的Bose Condense的Fermi海洋和Bosonic排除原则

Fermi seas from Bose condensates in Chern-Simons matter theories and a bosonic exclusion principle

论文作者

Minwalla, Shiraz, Mishra, Amiya, Prabhakar, Naveen

论文摘要

我们概括了先前获得的(在Hooft耦合中的所有订单)的骨气和费米斯大型$ N $ CHERN-SIMONS的热能能量的结果,这些理论具有基本问题,都将化学电位的值大于Quasiparticle热量。在Geracie,Goykhman和Son的分析的基础上,我们为任何给定能量和电荷的准级别状态提供了一个简单的明确公式,该公式是温度和化学势的函数。该公式是对Bose-Einstein统计的著名职业数字公式有限的杂种耦合的概括,并意味着Chern-Simons耦合玻色子的排除原则:占有任何特定状态的玻色子总数均无法超过Chern-Simons水平。将我们的结果专注于零温度,我们将这些理论的相图构建为化学势和紫外线参数的函数。在足够大的化学潜力下,我们研究的所有骨化理论都可以转移到可压缩的bose凝结相中,其中自由bose冷凝物的失控不稳定性通过Bosonic排除原理稳定。这款新型的玻色冷凝物是双重的,并繁殖了Fermionic Fermi Sea的热力学。

We generalize previously obtained results for the (all orders in the 't Hooft coupling) thermal free energy of bosonic and fermionic large $N$ Chern-Simons theories with fundamental matter, to values of the chemical potential larger than quasiparticle thermal masses. Building on an analysis by Geracie, Goykhman and Son, we present a simple explicit formula for the occupation number for a quasiparticle state of any given energy and charge as a function of the temperature and chemical potential. This formula is a generalization to finite 't Hooft coupling of the famous occupation number formula of Bose-Einstein statistics, and implies an exclusion principle for Chern-Simons coupled bosons: the total number of bosons occupying any particular state cannot exceed the Chern-Simons level. Specializing our results to zero temperature we construct the phase diagrams of these theories as a function of chemical potential and the UV parameters. At large enough chemical potential, all the bosonic theories we study transit into a compressible Bose condensed phase in which the runaway instability of free Bose condensates is stabilized by the bosonic exclusion principle. This novel Bose condensate is dual to - and reproduces the thermodynamics of - the fermionic Fermi sea.

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