论文标题

迅速旋转的几个fermion系统的天空基态

Skyrmion Ground States of Rapidly Rotating Few-Fermion Systems

论文作者

Palm, Lukas, Grusdt, Fabian, Preiss, Philipp M.

论文摘要

我们表明,人造磁场中的超低费物为跨物理学的新窗口打开了跨分数量子厅效应的新窗口。我们从数值上研究了快速旋转的光学微框架中强烈相互作用的几个特性系统的最低能量状态。我们发现具有局部铁磁,远距离旋转质地的天空状基态出现。为了实验实现此类状态,可以使用具有高阶动量成分的旋转微磨换来制备在最低兰道水平的费米子颗粒。我们发现参数状态应在当前实验中访问类似天空的基态,并在快速旋转的谐波陷阱中证明其制备的绝热途径。远距离相互作用的添加将导致自旋纹理和分数量子霍尔物理学之间的更丰富的相互作用。

We show that ultracold fermions in an artificial magnetic field open up a new window to the physics of the spinful fractional quantum Hall effect. We numerically study the lowest energy states of strongly interacting few-fermion systems in rapidly rotating optical microtraps. We find that skyrmion-like ground states with locally ferromagnetic, long-range spin textures emerge. To realize such states experimentally, rotating microtraps with higher-order angular momentum components may be used to prepare fermionic particles in a lowest Landau level. We find parameter regimes in which skyrmion-like ground states should be accessible in current experiments and demonstrate an adiabatic pathway for their preparation in a rapidly rotating harmonic trap. The addition of long range interactions will lead to an even richer interplay between spin textures and fractional quantum Hall physics.

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