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Magnetofermionic condensate in two dimensions

机译:二维铁铁离子凝结水

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Coherent condensate states of particles obeying either Bose or Fermi statistics are in the focus of interest in modern physics. Here we report on condensation of collective excitations with Bose statistics, cyclotron magnetoexcitons, in a high-mobility two-dimensional electron system in a magnetic field. At low temperatures, the dense non-equilibrium ensemble of long-lived triplet magnetoexcitons exhibits both a drastic reduction in the viscosity and a steep enhancement in the response to the external electromagnetic field. The observed effects are related to formation of a super-absorbing state interacting coherently with the electromagnetic field. Simultaneously, the electrons below the Fermi level form a super-emitting state. The effects are explicable from the viewpoint of a coherent condensate phase in a non-equilibrium system of two-dimensional fermions with a fully quantized energy spectrum. The condensation occurs in the space of vectors of magnetic translations, a property providing a completely new landscape for future physical investigations.
机译:服从玻色或费米统计的粒子的相干凝聚态是现代物理学关注的焦点。在这里,我们在磁场中的高迁移率二维电子系统中,用Bose统计数据,回旋加速器磁激子对集体激发的凝聚进行了报道。在低温下,长寿命的三重态磁激子的致密非平衡集合既表现出粘度的急剧降低,又表现出对外部电磁场响应的急剧增强。所观察到的效果与与电磁场相干相互作用的超吸收态的形成有关。同时,费米能级以下的电子形成超发射态。从具有完全量化的能谱的二维费米子的非平衡系统中的凝聚态凝聚相的观点来看,这种效果是可理解的。凝结发生在磁性平移矢量的空间中,该特性为将来的物理研究提供了全新的前景。

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