论文标题
压力对库酸酯的伪密度和电荷密度波阶段的影响,
Effect of pressure on the pseudogap and charge-density-wave phases of the cuprate La$_{1.6-x}$Nd$_{0.4}$Sr$_x$CuO$_4$ probed by thermopower measurements
论文作者
论文摘要
我们报告在静水压力下的热电器测量值$ _ $ _ {1.6-x} $ nd $ _ {0.4} $ _x $ _x $ _x $ cuo $ _4 $ _4 $ _4 $ _4 $(ND-LSCO),在低温状态下,通过抑制$ HENEVERTICTIONT在正常状态下使用Meatherconditive up nage $ heath gromed a grompertive a grange newhere gy-heptry us newher neky $ h = 31 $ h = 31 $ h = a = a = 31适用于高压和高场的技术,我们跟踪Seebeck系数$ S $的压力演化。在环境压力和低温下,最近发现$ s/t $突然增加了pseudoGap关键掺杂$ p^{\ star} = 0.23 $的ND-LSCO,与载体密度$ n $从$ n = 1 + p $下降$ n $ n = 1 + p $一致。在2.0 GPA的压力下,我们观察到$ S/T $的跳跃被抑制。这证实了先前基于电阻率和霍尔效应的压力研究,发现$ dp^{\ star}/dp \ simeq -0.01 $ holes/gpa,从而加强了这种效果的解释,即这种效应是由范霍夫点的压力诱导的变化驱动的。这意味着仅在费米表面类似孔的情况下才存在伪gap,这对伪随行的理论构成了强大的限制。我们还报告了ND-LSCO和LA $ _ {1.8-x} $ eu $ _ {0.2} $ sr $ _x $ _x $ cuo $ _4 $的热电器测量值接近$ p \ sim 1/8 $,这显示了在压力下的弱点。
We report thermopower measurements under hydrostatic pressure on the cuprate superconductor La$_{1.6-x}$Nd$_{0.4}$Sr$_x$CuO$_4$ (Nd-LSCO), at low-temperature in the normal state accessed by suppressing superconductivity with a magnetic field up to $H = 31$ T. Using a newly developed AC thermopower measurement technique suitable for high pressure and high field, we track the pressure evolution of the Seebeck coefficient $S$. At ambient pressure and low temperature, $S/T$ was recently found to suddenly increase in Nd-LSCO at the pseudogap critical doping $p^{\star} = 0.23$, consistent with a drop in carrier density $n$ from $n = 1 + p$ above $p^{\star}$ to $n = p$ below. Under a pressure of 2.0 GPa, we observe that this jump in $S/T$ is suppressed. This confirms a previous pressure study based on electrical resistivity and Hall effect which found $dp^{\star}/dP \simeq - 0.01$ holes/GPa, thereby reinforcing the interpretation that this effect is driven by the pressure-induced shift of the van Hove point. It implies that the pseudogap only exists when the Fermi surface is hole-like, which puts strong constraints on theories of the pseudogap phase. We also report thermopower measurements on Nd-LSCO and La$_{1.8-x}$Eu$_{0.2}$Sr$_x$CuO$_4$ in the charge density-wave phase near $p \sim 1/8$, which reveals a weakening of this phase under pressure.