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dynamical and quenched disorder of 2-dimensional charge stripes in La_(5/3)Sr_(1/3)NiO_4

机译:LA_(5/3)SR_(1/3)NIO_4中的二维电荷条带的动态和淬火病症

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Strontium doped La_2NiO_4 is isostructural with the high T_c cuprates La_(2-x)Sr_xCuO_4 and La_(2-x)Ba_xCuO_4. The hole-doped La_2NiO_4 system is a prototypical system for the understanding of strong electron-phonon coupling, and the resultant effects on material properties. The substitution of La with Sr provides holes, which tend to order at low temperatures into stripes. At doping levels of 1/3 and 1/2 commensurate charge modulations have been observed using electron diffraction. Neutron scattering has been used to show charge and spin ordering are common to many nickelates. Using synchrotron x-ray scattering on a single crystal of La_(5/3)Sr_(1/3)NiO_4, we have demonstrated the existence of charge stripes at low temperatures. Satellite reflections were located at positions (h+-2#omega# 0 l), (#omega#=1/3, h=even and l=odd) below the charge ordering transition T_(CO). The electronic transition into the charge stripe phase is second order without any corresponding structural transition. Above the transition (T_(CO) approx approx 240K) critical scattering was observed due to fluctuations into the charge stripe phase. The char stripes are shown to be two-dimensional in nature, both by measurements of the correlation lengths (#xi#_a approx approx 150 A, #xi#_b approx approx 300 A, #xi#_capprox approx 25 A.), and by the critical exponents of the charge stripe melting which show that the system is in the 2D universality class (2#beta#=0.25). The charge stripe ordering does not develop into long range order indicating that the stripes are disordered and quenched at the lowest temperatures. Detailed measurements of the correlation lengths at higher temperatures, just below the charge stripe melting temperature, display an anisotropic broadening indicative of an order-disorder transition. We ascribe these results to a smectic-nematic phase transition at approximately 225K. Such electronic quantum liquid-crystal phase transitions have been theoretically predicted before, but these results provide the first experimental evidence for them in charge stripe nickelates.
机译:掺杂锶La_2NiO_4是具有高T_C铜酸酯LA_(2-X)SR_XCUO_4和LA_(2-X)BA_XCUO_4的锶结构。掺杂的La_2Nio_4系统是用于理解强电子 - 声子耦合的原型系统,以及对材料性质的产生影响。 La用Sr替换为孔提供孔,其倾向于在低温下订购条纹。使用电子衍射已经观察到掺杂水平的1/3和1/2相称电荷调节。中子散射已经用于显示电荷,并且旋转排序对于许多镍酯是常见的。在LA_(5/3)SR_(1/3)NIO_4的单晶上使用同步X射线散射,我们已经证明了低温下的电荷条带。卫星反射位于位置(H + -2#Omega#0L),(#Omega#= 1/3,H =偶数和L =奇数)低于电荷排序转换T_(CO)。电子过渡到电荷条纹阶段是秒顺序而没有任何相应的结构转变。在过渡(T_(CO)大约约240k)由于在电荷条纹阶段的波动中,观察到临界散射。 Char条纹的性质本质上是二维的,两者都是通过相关长度的测量(#Xi#_A大约约150a,#xi#_b大约约300a,#xi#_capprox大约25 A.),以及通过电荷条纹熔化的临界指数,表明该系统处于2D普遍性课程(2#Beta#= 0.25)。电荷条纹排序不会发展成长距离顺序,表明条纹在最低温度下淬火并淬火。在较高温度下的相关长度的详细测量,刚刚低于电荷条纹熔化温度,显示出指示秩序障碍转变的各向异性展现。我们将这些结果作为大约225k归于近型向列的相变。在理论上已经预测了这种电子量子液晶相变,但这些结果为它们提供了第一种实验证据,以便它们在电荷条纹镍中。

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