论文标题

使用动态脱钩观察非线性自旋动力学和在BEC中挤压

Observation of nonlinear spin dynamics and squeezing in a BEC using dynamic decoupling

论文作者

Edri, Hagai, Raz, Boaz, Fleurov, Gavriel, Ozeri, Roee, Davidson, Nir

论文摘要

我们研究了由于州间相互作用而导致的两态叠加中的玻色网凝结物(BEC)的演变。使用总体不平衡的动态去耦方案,我们在取消状态内密度偏移和外部噪声源的同时测量状态间相互作用。我们的测量结果显示出磁敏感和不敏感叠加的统计不确定性较低,这表明我们成功地将系统与强磁性噪声脱在一起。我们通过实验表明,代表一般叠加状态的Bloch球是由状态间相互作用“扭曲”的,并且扭曲速率取决于状态和状态内散射长度$ a_ {22}+a_ {11}+a_ {11} -2a__2a__ {12} $之间的差异。我们在方案中使用非线性自旋动力学来证明高斯噪声的压缩,在以嘈杂的状态开始并施加160个回声脉冲时,$ 2.79 \ pm 0.43 $ dB挤压。当状态制备中存在错误时,可用于提高灵敏度。我们的结果可以更好地理解\ textsuperscript {87} rb中的原子间电位。我们的方案可用于超出标准量子极限的自旋挤压,并观察到靠近Feshbach共振的极性物理学,在那里相互作用差异和强烈的磁噪声。

We study the evolution of a Bose-Einstein Condensate (BEC) in a two-state superposition due to inter-state interactions. Using a population imbalanced dynamic decoupling scheme, we measure inter-state interactions while canceling intra-state density shifts and external noise sources. Our measurements show low statistical uncertainties for both magnetic sensitive and insensitive superpositions, indicating that we successfully decoupled our system from strong magnetic noises. We experimentally show that the Bloch sphere representing general superposition states is "twisted" by inter-state interactions, and that the twist rate depends on the difference between inter-state and intra-state scattering lengths $a_{22}+a_{11}-2a_{12}$. We use the non-linear spin dynamics in our scheme to demonstrate squeezing of gaussian noise, showing $2.79 \pm 0.43$ dB squeezing when starting with a noisy state and applying 160 echo pulses. Which can be used to increase sensitivity when there are errors in state preparation. Our results allow for a better understanding of inter-atomic potentials in \textsuperscript{87}Rb. Our scheme can be used for spin squeezing beyond the standard quantum limit and observing polaron physics close to a Feshbach resonance, where interactions diverge, and strong magnetic noises are ever present.

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