论文标题

使用耗散杂质控制超流体流

Controlling superfluid flows using dissipative impurities

论文作者

Will, Martin, Marino, Jamir, Ott, Herwig, Fleischhauer, Michael

论文摘要

我们提出并分析了一项方案,以通过噪声点接触与玻色子密度耦合在一个维度,弱相互作用的bose气体中创建和控制超流量。首先考虑在静态或移动的冷凝物中进行单个接触,我们确定了三个不同的动态阶段:I。线性响应状态,其中噪声与噪声的强度成比例地诱导相干流,并伴随着气体正常成分的逆流量,II。具有抑制电流和负差分电流到噪声特性的ZENO状态,以及III。对于非变化的相对速度,是连续孤子发射的制度。在耗散杂质处的冷凝物的速度决定了通过点接触对电流抑制的阈值,以及从缺陷中的索利顿“射击”的非平稳状态的开始。在静止时,在冷凝物中概括了两个点接触,我们表明可以使用噪声调整来控制,稳定或最终分流粒子沿片段的超氟传输,并具有将超流体源源的原子类似物的透视图,用于研究量子传输现象。

We propose and analyze a protocol to create and control the superfluid flow in a one dimensional, weakly interacting Bose gas by noisy point contacts coupled to the density of the bosons. Considering first a single contact in a static or moving condensate, we identify three different dynamical phases: I. a linear response regime, where the noise induces a coherent flow in proportion to the strength of the noise accompanied by a counterflow of the normal component of the gas, II. a Zeno regime with suppressed currents and negative differential current to noise characteristics, and III. for a non-vanishing relative velocity, a regime of continuous soliton emission. The velocity of the condensate at the dissipative impurity determines the threshold for Zeno suppression of the current through the point contact, and the onset of the non-stationary regime of soliton "shooting" from the defect. Generalizing to two point contacts in a condensate at rest we show that noise tuning can be employed to control, stabilize or eventually shunt the superfluid transport of particles along the segment which connects them, with perspectives for an atomtronic analogue of a superfluid-current source for studying quantum transport phenomena.

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