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Paramagnetic resonance in spin-polarized disordered Bose-Einstein condensates

机译:自旋极化无序玻色-爱因斯坦凝聚物中的顺磁共振

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摘要

We study the pseudo-spin density response of a disordered two-dimensional spin-polarized Bose gas to weak alternating magnetic field, assuming that one of the spin states of the doublet is macroscopically occupied and Bose-condensed while the occupation of the other state remains much smaller. We calculate spatial and temporal dispersions of spin susceptibility of the gas taking into account spin-flip processes due to the transverse-longitudinal splitting, considering microcavity exciton polaritons as a testbed. Further, we use the Bogoliubov theory of weakly-interacting gases and show that the time-dependent magnetic field power absorption exhibits double resonance structure corresponding to two particle spin states (contrast to paramagnetic resonance in regular spin-polarized electron gas). We analyze the widths of these resonances caused by scattering on the disorder and show that, in contrast with the ballistic regime, in the presence of impurities, the polariton scattering on them is twofold: scattering on the impurity potential directly and scattering on the spatially fluctuating condensate density caused by the disorder. As a result, the width of the resonance associated with the Bose-condensed spin state can be surprisingly narrow in comparison with the width of the resonance associated with the non-condensed state.
机译:我们研究了无序二维自旋极化Bose气体对弱交变磁场的伪自旋密度响应,假定双峰的自旋态之一在宏观上被占据并且Bose凝聚,而另一种态的占有仍然存在小多了。考虑到微腔激子极化子作为试验台,我们考虑了自旋翻转过程的横向-纵向分裂,计算了气体自旋敏感性的时空分布。此外,我们使用了弱相互作用气体的Bogoliubov理论,证明了随时间变化的磁场功率吸收具有对应于两个粒子自旋状态的双共振结构(与常规自旋极化电子气中的顺磁共振相反)。我们分析了由无序散射引起的这些共振的宽度,并表明,与弹道状态相反,在存在杂质的情况下,它们上的极化子散射是双重的:直接在杂质势上散射和在空间波动上散射冷凝水密度引起的紊乱。结果,与与未凝聚状态相关的共振的宽度相比,与玻色凝聚自旋状态相关的共振的宽度可以出乎意料地窄。

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