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Phase diagram of a two-component Fermi gas with resonant interactions

机译:具有共振相互作用的两组分费米气体的相图

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摘要

The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of these pairs determines the robustness of the superfluid state, and the quest for superconductors with high critical temperature equates to a search for systems with strong pairing mechanisms. Ultracold atomic Fermi gases present a highly controllable model system for studying strongly interacting fermions. Tunable interactions (through Feshbach collisional resonances) and the control of population or mass imbalance among the spin components provide unique opportunities to investigate the stability of pairing-and possibly to search for exotic forms of superfluidity. A major controversy has surrounded the stability of superfluidity against an imbalance between the two spin components when the fermions interact resonantly (that is, at unitarity). Here we present the phase diagram of a spin-polarized Fermi gas of (6)Li atoms at unitarity, experimentally mapping out the superfluid phases versus temperature and density imbalance. Using tomographic techniques, we reveal spatial discontinuities in the spin polarization; this is the signature of a first-order superfluid-to-normal phase transition, and disappears at a tricritical point where the nature of the phase transition changes from first-order to second-order. At zero temperature, there is a quantum phase transition from a fully paired superfluid to a partially polarized normal gas. These observations and the implementation of an in situ ideal gas thermometer provide quantitative tests of theoretical calculations on the stability of resonant superfluidity.
机译:费米子的配对是超导性和超流动性的核心。这些对的稳定性决定了超流体状态的鲁棒性,对具有高临界温度的超导体的追求等同于寻找具有强大配对机制的系统。超冷原子费米气体提供了一个高度可控的模型系统,用于研究强相互作用的费米子。可调谐的相互作用(通过Feshbach碰撞共振)以及自旋成分之间的种群或质量失衡的控制提供了独特的机会来研究配对的稳定性,并可能寻找奇特的超流体形式。一个重大争议围绕着当费米子共振相互作用时(即,整体性)超流的稳定性,以防止两个自旋分量之间的不平衡。在这里,我们给出了自相极化的(6)Li原子费米气体的相图,该图以实验方式绘制了相对于温度和密度不平衡的超流体相。使用层析成像技术,我们揭示了自旋极化的空间不连续性;这是一阶超流体到正态相变的特征,在相变性质从一阶变为二阶的三临界点处消失。在零温度下,存在从完全配对的超流体到部分极化的正常气体的量子相变。这些观察和现场理想气体温度计的实施提供了关于共振超流体稳定性的理论计算的定量测试。

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