论文标题
通过RIX识别BI-2212铜塔中充电顺序现象的临界掺杂
Identification of a Critical Doping for Charge Order Phenomena in Bi-2212 Cuprates via RIXS
论文作者
论文摘要
识别量子临界点(QCP)及其相关的波动可能是揭示在铜酸盐超导体中观察到的异常电子现象的关键。最近,已经从伴随超导状态下的CO阶参数降低的CO激发的异常增强中推断出了与电荷顺序(CO)相关的量子波动(CO)的特征。为了获得有关CO和超导性之间相互作用的更多见解,我们在这里研究了在BI-2212 Cuprate相图中,使用Cu L3-边缘的谐振X射线散射(RIX)的兴奋剂依赖性。随着掺杂的增加,CO波形减小,以0.25 R.L.U.的相应值饱和。超出特征性掺杂PC,其中相关长度比明显周期性短(4A0)。这种行为表明CO的波动性质;在PC上,超导状态中CO激发的增殖也最强,与CO QCP的预期行为一致。有趣的是,PC似乎几乎是最佳掺杂,其中超导过渡温度TC最大。
Identifying quantum critical points (QCPs) and their associated fluctuations may hold the key to unraveling the unusual electronic phenomena observed in cuprate superconductors. Recently, signatures of quantum fluctuations associated with charge order (CO) have been inferred from the anomalous enhancement of CO excitations that accompany the reduction of the CO order parameter in the superconducting state. To gain more insight about the interplay between CO and superconductivity, here we investigate the doping dependence of this phenomenon throughout the Bi-2212 cuprate phase diagram using resonant inelastic x-ray scattering (RIXS) at the Cu L3- edge. As doping increases, the CO wavevector decreases, saturating at a commensurate value of 0.25 r.l.u. beyond a characteristic doping pc, where the correlation length becomes shorter than the apparent periodicity (4a0). Such behavior is indicative of the fluctuating nature of the CO; and the proliferation of CO excitations in the superconducting state also appears strongest at pc, consistent with expected behavior at a CO QCP. Intriguingly, pc appears to be near optimal doping, where the superconducting transition temperature Tc is maximal.