论文标题

重新访问$^{63} $ cu nmr签名的充电订单$ _ {1.875} $ ba $ _ {0.125} $ cuo $ _ {4} $

Revisiting the $^{63}$Cu NMR signature of charge order in La$_{1.875}$Ba$_{0.125}$CuO$_{4}$

论文作者

Imai, T., Singer, P. M., Arsenault, A., Fujita, M.

论文摘要

我们使用单晶$^{63} $ cu nmr技术来重新访问早期的$^{63} $ cu nqr nqr签名的费用订单的签名,以la $ _ $ _ {1.875} $ _ {1.875} $ ba $ _ {0.125} W. Hunt等人,物理。莱特牧师。 {\ bf 82},4300(1999)]。我们表明,旋转相关性的增长在$ \ sim 80 $ 〜k以下加速,其中逆拉动laplace变换(ILT)t $ _ {1} $分析$^{139} $ la nmr nmr spin-spin-spin-lattice放松曲线最近发现了lattice和/oppartice and/oppart/opper/oppart lattice and/coluder/opper/opper/opper/opper/opper/opper/opper/opper/opper/opper/offer/colude folde fallaTe comploce and/complate t $ 〜k。 M. Singer等人,{\ bf 101},174508(2020)]。从$^{63} $ CU NMR信号强度的准确测量中,自旋回波衰减$ M(2τ)$,Spin-lattice放松率$^{63} 1/T_1 $,其密度分布函数$ P(^{63} $ t _ {\ text {calle}} \ simeq 54 $ 〜k开启了旋转波动的强大增强{\ it在电荷有序域内},从而使cuo $ _2 $ _2 $ planes极其不均匀。费用有序域快速生长在$ t _ {\ text {Charge}} $下方,而音量分数$ f _ {\ text {ca}} $不受充电顺序影响的规范域的$,逐渐减少了$ \ \ sim 35 $ 〜k。这一发现与我们完全基于$ f _ {\ text {ca}} $的独立估计完全基于$^{139} $ la Iltt $ _ {1} $分析,但与la $ _ $ _ $ _ {1.85 $ _ $ sr $ _ $ _11 $ _11 $ _11的充电订单较慢相反,但与较慢的充电域增长形成鲜明对比。从其$ t _ {\ text {calle}} \ simeq 80 $ 〜k到$ t _ {\ text {c}} \ simeq 30 $ 〜k。

We use single crystal $^{63}$Cu NMR techniques to revisit the early $^{63}$Cu NQR signature of charge order observed for La$_{1.875}$Ba$_{0.125}$CuO$_{4}$ ($T_{\text{c}} =4$~K) [A. W. Hunt et al., Phys. Rev. Lett. {\bf 82}, 4300 (1999)]. We show that the growth of spin correlations is accelerated below $\sim 80$~K, where the inverse Laplace transform (ILT) T$_{1}$ analysis of the $^{139}$La NMR spin-lattice relaxation curve recently uncovered emergence of the slow components in the lattice and/or charge fluctuations [P. M. Singer et al., {\bf 101}, 174508 (2020)]. From the accurate measurements of the $^{63}$Cu NMR signal intensity, spin echo decay $M(2τ)$, spin-lattice relaxation rate $^{63}1/T_1$, and its density distribution function $P(^{63}1/T_{1})$, we also demonstrate that charge order at $T_{\text{charge}}\simeq 54$~K turns on strong enhancement of spin fluctuations {\it within charge ordered domains}, thereby making the CuO$_2$ planes extremely inhomogeneous. The charge ordered domains grow quickly below $T_{\text{charge}}$, and the volume fraction $F_{\text{CA}}$ of the canonical domains unaffected by charge order gradually diminishes by $\sim 35$~K. This finding agrees with our independent estimations of $F_{\text{CA}}$ based entirely on the $^{139}$La ILTT$_{1}$ analyses, but is in a stark contrast with much slower growth of charge ordered domains observed for La$_{1.885}$Sr$_{0.115}$CuO$_{4}$ from its $T_{\text{charge}}\simeq 80$~K to $T_{\text{c}}\simeq 30$~K.

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