论文标题

纺纱诱导的扭结,孔和量子液滴的不稳定性

Spinor-Induced Instability of Kinks, Holes and Quantum Droplets

论文作者

Kartashov, Yaroslav V., Lashkin, V. M., Modugno, Michele, Torner, Lluis

论文摘要

我们解决了一维(1D)孔和扭结的存在和稳定性以及嵌套在延伸的二元bose混合物中的二维(2D)涡流孔,在Lee-Huang-Yang-Yang(Lhy)量子的存在下出现了对平均磁场能量的量子,以及自束量子液滴。我们同时考虑具有相同种类内散射长度的对称系统和原子质量,由单个(标量)Lhy校正的Gross-pitaevskii方程(GPE)建模,以及具有不同种类内散射长度的一般不对称情况,由两个构成(由两个耦合(Spinor)GPES描述)。我们发现,在对称的环境中,1D和2D孔可以在与自结合的量子液滴重叠的化学电位范围内以稳定形式存在,但远远超出了它。在这种情况下,发现孔在1D中是稳定的,它们在关键的化学潜力上转变为稳定的相位扭结对,局部液滴转化为扁平状态,从而揭示了局部和扩展的非线性状态之间的联系。相比之下,不对称系统的旋转性质可能会导致1D孔的不稳定性,这往往会沿相反方向移动到两个灰色状态。这种不稳定是由于系统的纺纱性性质而产生的,它仅影响嵌套在扩展调制稳定的背景中的孔,而局部量子液滴家族仍然完全稳定,即使在不对称的情况下,1D孔仍然保持稳定,只有接近它们转化为扭结对的点。我们还发现,对称系统允许在中等振幅下完全稳定的2D涡流单付态状态,而非常规的不稳定性也出现在高幅度下。对称性也强烈抑制了双重涡旋孔的不稳定性,因此在低振幅下表现出意外的强大演变。

We address the existence and stability of one-dimensional (1D) holes and kinks and two-dimensional (2D) vortex-holes nested in extended binary Bose mixtures, which emerge in the presence of Lee-Huang-Yang (LHY) quantum corrections to the mean-field energy, along with self-bound quantum droplets. We consider both the symmetric system with equal intra-species scattering lengths and atomic masses, modeled by a single (scalar) LHY-corrected Gross-Pitaevskii equation (GPE), and the general asymmetric case with different intra-species scattering lengths, described by two coupled (spinor) GPEs. We found that in the symmetric setting, 1D and 2D holes can exist in a stable form within a range of chemical potentials that overlaps with that of self-bound quantum droplets, but that extends far beyond it. In this case, holes are found to be stable in 1D and they transform into pairs of stable out-of-phase kinks at the critical chemical potential at which localized droplets turn into flat-top states, thereby revealing the connection between localized and extended nonlinear states. In contrast, spinor nature of the asymmetric systems may lead to instability of 1D holes, which tend to break into two gray states moving in the opposite directions. Such instability arises due to spinor nature of the system and it affects only holes nested in extended modulationally-stable backgrounds, while localized quantum droplet families remain completely stable, even in the asymmetric case, while 1D holes remain stable only close to the point where they transform into pairs of kinks. We also found that symmetric systems allow fully stable 2D vortex-carrying single-charge states at moderate amplitudes, while unconventional instabilities appear also at high amplitudes. Symmetry also strongly inhibits instabilities for double-charge vortex-holes, which thus exhibit unexpectedly robust evolutions at low amplitudes.

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