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Superfluid/ferromagnet/superfluid-junction and π-phase in a superfluid Fermi gas at finite temperatures

机译:有限温度下超流体费米气体中的超流体/铁磁体/超流体结和π相

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We investigate the stability of π-phase in a polarized superfluid Fermi gas (N > N, where Nσ is the number of atoms in the hyperfine state described by pseudospin-σ). In our previous paper [T. Kashimura, S. Tsuchiya, and Y. Ohashi, Phys. Rev. A 82, 033617 (2010)], we showed that excess atoms (ΔN = N − N) localized around a potential barrier embedded in the system induces the π-phase at T = 0, where the phase of superfluid order parameter differ by π across the junction. In this paper, we extend our previous work to include temperature effects within the mean-field theory. We show that the π-phase is stable even at finite temperatures, although transition from the π-phase to 0-phase eventually occurs at a certain temperature. Our results indicate that the π-phase is experimentally accessible in cold Fermi gases.
机译:我们研究了极化超流体费米气体(N > N 中π相的稳定性,其中N σ是原子数在由准自旋-σ描述的超精细状态下)。在我们以前的论文[T. Kashimura,S。Tsuchiya和Y.Ohashi(物理) Rev. A 82,033617(2010)]中,我们显示了位于系统中嵌入的势垒周围的多余原子(ΔN= N -N ) T = 0时的π相,其中超流体阶数参数的相位在整个结处相差π。在本文中,我们将先前的工作扩展到将温度效应纳入均值场理论中。我们表明,即使在一定温度下,π相仍是稳定的,尽管从π相到0相的转变最终会在一定温度下发生。我们的结果表明,在冷费米气体中实验可得到π相。

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