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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Squeezed magnons in an optical lattice: Application to simulation of the dynamical Casimir effect at finite temperature
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Squeezed magnons in an optical lattice: Application to simulation of the dynamical Casimir effect at finite temperature

机译:光学晶格中的压缩磁振子:在有限温度下模拟动态卡西米尔效应的应用

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We propose to realize controllable squeezing states of ferromagnetic magnons with a spinor Bose-Einstein condensate confined in an optical lattice. We use an external laser field to induce optical dipole-dipole interaction, which leads to magnon excitations of the system. By focusing on the role of the long-range magnetic and the optical dipole-dipole interactions, we show that the existence and properties of the produced squeezed magnons can be well controlled by tuning the transverse trapping widths of the condensates. We also show that the magnon excitations in this system have a close analogy with the dynamical Casimir effect at finite temperature predicted by Plunien and Jing.
机译:我们建议通过将自旋玻色-爱因斯坦凝聚物限制在光学晶格中来实现铁磁磁振子的可控压缩状态。我们使用外部激光场来诱导光学偶极-偶极相互作用,从而导致系统的磁振激发。通过关注长距离磁和光学偶极-偶极相互作用的作用,我们表明,通过调节冷凝液的横向俘获宽度,可以很好地控制所产生的压缩磁振子的存在和性质。我们还表明,该系统中的磁振子激发与Plunien和Jing所预测的有限温度下的动态卡西米尔效应具有相似的关系。

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