论文标题
偶极玻色污水的极化的任意角度旋转
Arbitrary-angle rotation of the polarization of a dipolar Bose-Einstein condensate
论文作者
论文摘要
我们采用了谐波捕获的偶极玻璃纤维凝结物的理论,以检查均匀磁场的影响,该磁场以任意角度与其自身方向旋转。这是通过半分析求解该系统在Thomas-Fermi近似中的偶极性超流体动力学的方法来实现的,并允许相对于非共谐波TRAP的对称轴倾斜冷凝水密度曲线的身体框架。这种额外的自由度在任何给定的偶极倾斜角度都有以前未知的固定溶液分支中表现出来。我们还发现,相对于旋转轴的固定状态体形框架的倾斜角是捕获几何,旋转频率和偶极倾斜角的非平地功能。对于至少比平面捕获频率高的旋转频率,固定状态密度曲线几乎完全等同于预期的曲线,当时在散至的偶极电势中,当沿“魔法角度”倾斜时,这些电位有效地消失了,54.7°$ $。但是,通过将有关这些固定状态的完全依赖时间的超级流体动力学线性线性化,我们发现它们在集体模式的形成上动态不稳定,我们期望这会导致湍流。
We have employed the theory of harmonically trapped dipolar Bose-Einstein condensates to examine the influence of a uniform magnetic field that rotates at an arbitrary angle to its own orientation. This is achieved by semi-analytically solving the dipolar superfluid hydrodynamics of this system within the Thomas-Fermi approximation and by allowing the body frame of the condensate's density profile to be tilted with respect to the symmetry axes of the nonrotating harmonic trap. This additional degree of freedom manifests itself in the presence of previously unknown stationary solution branches for any given dipole tilt angle. We also find that the tilt angle of the stationary state's body frame with respect to the rotation axis is a nontrivial function of the trapping geometry, rotation frequency and dipole tilt angle. For rotation frequencies of at least an order of magnitude higher than the in-plane trapping frequency, the stationary state density profile is almost perfectly equivalent to the profile expected in a time-averaged dipolar potential that effectively vanishes when the dipoles are tilted along the `magic angle', $54.7 °$. However, by linearizing the fully time-dependent superfluid hydrodynamics about these stationary states, we find that they are dynamically unstable against the formation of collective modes, which we expect would result in turbulent decay.