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The rate of quasiparticle recombination probes the onset of coherence in cuprate superconductors

机译:准粒子重组的速率探测了铜酸盐超导体中相干的发生

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摘要

In the underdoped copper-oxides, high-temperature superconductivity condenses from a nonconventional metallic ”pseudogap” phase that exhibits a variety of non-Fermi liquid properties. Recently, it has become clear that a charge density wave (CDW) phase exists within the pseudogap regime. This CDW coexists and competes with superconductivity (SC) below the transition temperature Tc, suggesting that these two orders are intimately related. Here we show that the condensation of the superfluid from this unconventional precursor is reflected in deviations from the predictions of BSC theory regarding the recombination rate of quasiparticles. We report a detailed investigation of the quasiparticle (QP) recombination lifetime, τqp, as a function of temperature and magnetic field in underdoped HgBa2CuO4+δ (Hg-1201) and YBa2Cu3O6+x (YBCO) single crystals by ultrafast time-resolved reflectivity. We find that τqp(T ) exhibits a local maximum in a small temperature window near Tc that is prominent in underdoped samples with coexisting charge order and vanishes with application of a small magnetic field. We explain this unusual, non-BCS behavior by positing that Tc marks a transition from phase-fluctuating SC/CDW composite order above to a SC/CDW condensate below. Our results suggest that the superfluid in underdoped cuprates is a condensate of coherently-mixed particle-particle and particle-hole pairs.
机译:在掺杂不足的氧化铜中,高温超导从非常规金属“ pseudogap”相凝结,该相具有多种非费米液体性质。近来,已经清楚的是伪间隙状态内存在电荷密度波(CDW)相。该CDW与转变温度Tc以下的超导性(SC)共存并竞争,这表明这两个顺序密切相关。在这里,我们证明了这种非常规前体中超流体的缩合反映在与BSC理论关于准粒子复合率的预测的偏差中。我们报告了通过超快时间分辨反射率对准掺杂(QP)复合寿命τqp作为温度和磁场的函数进行了详细研究,该掺杂和掺杂浓度不足的HgBa2CuO4 +δ(Hg-1201)和YBa2Cu3O6 + x(YBCO)单晶中。我们发现,τqp(T)在Tc附近的一个小温度窗口中表现出局部最大值,这在共存电荷顺序的掺杂不足的样品中很明显,并且在施加小磁场时消失。我们通过假设Tc标志着从上面的相变SC / CDW复合阶跃到下面的SC / CDW凝析液的转变来解释这种不寻常的非BCS行为。我们的结果表明,掺杂不足的铜酸盐中的超流体是相干混合的粒子-粒子和粒子-空穴对的冷凝物。

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