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Anomalous conductance of a strongly interacting Fermi gas through a quantum point contact

机译:通过量子点接触强烈相互作用的费米气体的异常电导

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In this work we study the particle conductance of a strongly interacting Fermi gas through a quantum point contact. With an atom-molecule two-channel model, we compute the contribution to particle conductance by both the fermionic atoms and the bosonic molecules using the Keldysh formalism. Focusing on the regime above the Fermi superfluid transition temperature, we find that the fermionic contribution to the conductance is reduced by interaction compared with the quantized value for the noninteracting case; while the bosonic contribution to the conductance exhibits a plateau with nonuniversal values that is larger than the quantized conductance. This feature is particularly profound at temperature close to the superfluid transition. We emphasize that the enhanced conductance arises because of the bosonic nature of closed channel molecules and the low dimensionality of the quantum point contact.
机译:在这项工作中,我们通过量子点接触研究强烈相互作用的费米气体的粒子电导。 通过原子分子双通道模型,我们使用keldysh形式主义来计算到Fermionic原子和孢子菌分子的粒子电导的贡献。 专注于高于FERMI超流过渡温度的制度,发现通过与非交互式案例的量化值相比,通过相互作用减少了对电导的到期的贡献; 虽然对电导的助性贡献呈现出具有大于量化电导的非同性值的平台。 该特征在接近超流过渡的温度下特别深刻。 我们强调,由于闭合通道分子的孢子性质和量子点接触的低维度,因此产生了增强的电导。

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