论文标题
动态极化梯度场中的自旋和密度自我排序
Spin and density self-ordering in dynamic polarization gradients fields
论文作者
论文摘要
我们研究了光腔中两种组分的玻色菌冷凝水的零温度量子相图。两个原子自旋状态是由两个横向正交的,蓝色的平面波激光器诱导排斥腔电位的拉曼。对于弱泵,激光器偏爱具有均匀密度和预定义均匀自旋方向的状态。当一个泵激光平行于空腔模式极化时,相干散布到谐振器中的光子沿腔轴诱导极化梯度,从而介导了远程密度密度,自旋密度,自旋密度和自旋旋转相互作用。我们表明,耦合的原子自由系统实现了$ t $ - $ j $ - $ v $ - $ w $型号的中心方面,并带有丰富的相图。在平均场极限下,我们至少识别四个定性不同的密度和自旋顺序的相位,包括沿空腔轴的铁磁和抗铁磁序,可以通过泵的强度和失调来控制。对发射场的振幅和相位的实时观察具有实现相位的强签名,并允许实时确定相变线。连同测量人口不平衡的相位图的大多数特性可以重建。
We study the zero-temperature quantum phase diagram for a two-component Bose-Einstein condensate in an optical cavity. The two atomic spin states are Raman coupled by two transverse orthogonally-polarized, blue detuned plane-wave lasers inducing a repulsive cavity potential. For weak pump the lasers favor a state with homogeneous density and predefined uniform spin direction. When one pump laser is polarized parallel to the cavity mode polarization, the photons coherently scattered into the resonator induce a polarization gradient along the cavity axis, which mediates long-range density-density, spin-density, and spin-spin interactions. We show that the coupled atom-cavity system implements central aspects of the $t$-$J$-$V$-$W$ model with a rich phase diagram. At the mean-field limit we identify at least four qualitatively distinct density- and spin-ordered phases including ferro- and anti-ferromagnetic order along the cavity axis, which can be controlled via the pump strength and detuning. A real time observation of amplitude and phase of the emitted fields bears strong signatures of the realized phase and allows for real-time determination of phase transition lines. Together with measurements of the population imbalance most properties of the phase diagram can be reconstructed.