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首页> 外文期刊>The journal of high energy physics >Superfluid and metamagnetic phase transitions in ω-deformed gauged supergravity
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Superfluid and metamagnetic phase transitions in ω-deformed gauged supergravity

机译:Superfluid和Metamnonic淘语中<强调类型=“斜体”>ω -Deformed测量的超级级

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A bstract We study non-supersymmetric truncations of ω-deformed N = 8 $$ mathcal{N}=8 $$ gauged supergravity that retain a U(1) gauge field and three scalars, of which two are neutral and one charged. We construct dyonic domain-wall and black hole solutions with AdS~(4)boundary conditions when only one (neutral) scalar is non-vanishing, and examine their behavior as the magnetic field and temperature of the system are varied. In the infrared the domain-wall solutions approach either dyonic AdS 2 × ? 2 $$ {mathrm{AdS}}_2imes {mathbb{R}}^2 $$ or else Lifshitz-like, hyperscaling violating geometries. The scaling exponents of the latter are z = 3 / 2 and θ = ?2, and are independent of the ω -deformation. New ω -dependent AdS~(4)vacua are also identified. We find a rich structure for the magnetization of the system, including a line of metamagnetic first-order phase transitions when the magnetic field lies in a particular range. Such transitions arise generically in the ω-deformed theories. Finally, we study the onset of a superfluid phase by allowing a fluctuation of the charged scalar field to condense, spontaneously breaking the abelian gauge symmetry. The mechanism by which the superconducting instability ceases to exist for strong magnetic fields is different depending on whether the field is positive or negative. Finally, such instabilities are expected to compete with spatially modulated phases.
机译:Bstract我们研究了ω-变形的非超对称截短N = 8 $$ Mathcal {n} = 8 $$测量的超级争夺,保留U(1)仪表和三个标量,其中两个是中性的,一个是一个充电的。我们用ADS〜(4)边界条件构建戴型域 - 墙壁和黑洞解决方案,当仅一个(中性)标量是非消失的时,并且在变化系统的磁场和温度时检查它们的行为。在红外线域墙上解决方案接近钕广告2×? 2 $$ { mathrm {ads}} _ 2 times { mathbb {r}} ^ 2 $$或lifshitz般的,超出违反几何形状。后者的缩放指数是Z = 3/2和θ=Δ2,并且与ω-adformation无关。还确定了新的ω-dependent广告〜(4)Vacua。我们发现系统的磁化结构的丰富结构,当磁场位于特定范围内时,包括一系列元素一流的相位过渡。这种转变在ω-变形的理论中经常出现。最后,我们通过允许带电标量场的波动来凝结,自发地破坏雅中标仪对称性来研究超流相的发作。基于该字段是正的还是负的,所以通过该机制对于强磁场不存在的机理是不同的。最后,预计这种不稳定性将与空间调制阶段竞争。

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