إظهرنا أن تدرج الإشعاع المتكامل لنكوبول الذري النووي Cu-63 في La (1.6-x) Nd (0.4) Sr (x) CuO (4) ينخفض بشكل كبير أسفل درجة حرارة ترتيب الشريط الشحني T (شحنة). المقارنة مع الإشعاع الذري الشعاعي والشعاعي يدل على أن نسبة الإزالة F (T) (أي نسبة الإشعاع المفقود من تدرج الإشعاع المتكامل لإشارة NQR) تمثل معامل ترتيب الشريط الشحني. الدراسة النظامية تكشف عن ترتيب الشريط الشحني الجزئي في المنطقة السوبركوندوكتيفة 0.07 <= x <= 0.25. كأداة للدرجة المنخفضة t = T / T (شحنة)، يكون تدرج تباين F (t) أقصر لتركيز الثقوب x = 1/8، مما يدل على أن x = 1/8 هو التركيز الأمثل لشكل الشريط.
We demonstrate that the integrated intensity of Cu-63 nuclear quadrupole resonance (NQR) in La(1.6-x)Nd(0.4)Sr(x)CuO(4) decreases dramatically below the charge-stripe ordering temperature T(charge). Comparison with neutron and X-ray scattering indicates that the wipeout fraction F(T) (i.e. the missing fraction of the integrated intensity of the NQR signal) represents the charge-stripe order parameter. The systematic study reveals bulk charge-stripe order throughout the superconducting region 0.07 <= x <= 0.25. As a function of the reduced temperature t = T/T(charge), the temperature dependence of F(t) is sharpest for the hole concentration x=1/8, indicating that x=1/8 is the optimum concentration for stripe formation.
We demonstrate that one can measure the charge-stripe order parameter in the hole-doped CuO(2) planes of La(1.875)Ba(0.125)CuO(4), La(1.48)Nd(0.4)Sr(0.12)CuO(4) and La(1.68)Eu(0.2)Sr(0.12)CuO(4) utilizing the wipeout effects of Cu-63 NQR. Application
We report experimental evidence for the spatial variation of hole concentration x_(hole) in the high Tc superconductor La(2-x)Sr(x)CuO(4) (0.04 <= x <= 0.16) by using (63)Cu NQR for (63)Cu isotope enriched samples. We demonstrate that the extent of t
We report detailed systematic measurements of the spatial variation in electronic states in the high T{c} superconductor La{2-x}Sr{x}CuO{4} (0.04<= x <= 0.16) using {63}Cu NQR for {63}Cu isotope enriched poly-crystalline samples. We demonstrate that
Previously we have presented evidence for stripe order of holes and spins in La(1.6-x)Nd(0.4)Sr(x)CuO(4) with x=0.12. Here we show, via neutron diffraction measurements of magnetic scattering, that similar order occurs in crystals with x=0.15 and 0.2