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首页> 外文期刊>Physical Review X >Quantum-Fluctuation-Driven Crossover from a Dilute Bose-Einstein Condensate to a Macrodroplet in a Dipolar Quantum Fluid
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Quantum-Fluctuation-Driven Crossover from a Dilute Bose-Einstein Condensate to a Macrodroplet in a Dipolar Quantum Fluid

机译:稀释从玻色-爱因斯坦冷凝物到偶极子量子流体中的大液滴的量子波动驱动交叉。

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In a joint experimental and theoretical effort, we report on the formation of a macrodroplet state in an ultracold bosonic gas of erbium atoms with strong dipolar interactions. By precise tuning of the s -wave scattering length below the so-called dipolar length, we observe a smooth crossover of the ground state from a dilute Bose-Einstein condensate to a dense macrodroplet state of more than 2 × 10 4 atoms . Based on the study of collective excitations and loss features, we prove that quantum fluctuations stabilize the ultracold gas far beyond the instability threshold imposed by mean-field interactions. Finally, we perform expansion measurements, showing that although self-bound solutions are prevented by losses, the interplay between quantum stabilization and losses results in a minimal time-of-flight expansion velocity at a finite scattering length.
机译:在实验和理论上的共同努力下,我们报告了在具有强偶极相互作用的原子的超冷硼气体中大液滴状态的形成。通过将s波散射长度精确地调节到所谓的偶极长度以下,我们观察到基态从稀薄的Bose-Einstein凝聚态到超过2×10 4个原子的密集大液滴态的平稳过渡。基于对集体激发和损失特征的研究,我们证明了量子涨落使超冷气体稳定,远远超过了均场相互作用所施加的不稳定性阈值。最后,我们进行了膨胀测量,结果表明,尽管损失会阻止自束缚解,但量子稳定与损失之间的相互作用会在有限的散射长度下导致最小的飞行时间膨胀速度。

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