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相关论文: (Sr/Ca)_{14}Cu_{24}O_{41} spin ladders studied by …

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Transport and 63^Cu-NMR, Knight shift and T_1, measurements performed on the two-leg spin ladders of Sr_2Ca_{12}Cu_{24}O_{41} single crystals show a collapse of the gap in ladder spin excitations when superconductivity is stabilised under a…

Pressure-induced superconductivity in a spin-ladder cuprate Sr$_2$Ca$_{12}$Cu$_{24}$O$_{41}$ has not been studied on a microscopic level so far although the superconductivity was already discovered in 1996. We have improved high-pressure…

超导电性 · 物理学 2009-11-10 Naoki Fujiwara

We report the results of a ^63Cu and ^17O NMR study of the nuclear quadrupole interaction tensor, ^(17,63)nu\_{Q,alpha}, in the hole doped spin ladder system Sr\_(14-x)Ca\_xCu\_24O\_41 (x = 0 and 12) performed under ambient and high…

超导电性 · 物理学 2016-08-16 Y. Piskunov , D. Jérome , P. Auban-Senzier , P. Wzietek , A. Yakubovsky

The spin gap evolution upon Ca doping in Sr14-xCaxCu24O41 was systematically investigated using inelastic neutron scattering. We discover that the singlet-triplet spin gap excitation survives in this series with x up to 13, indicating the…

Spin-ladder compounds make interesting analogs of the high-temperature superconductors, because they contain layers of nearly one-dimensional "ladders" consisting of a square array of copper and oxygen atoms. Increasing the number of legs…

强关联电子 · 物理学 2007-05-23 F. F. Balakirev , J. B. Betts , G. S. Boebinger , N. Motoyama , H. Eisaki , S. Uchida

We report systematic 17O-NMR measurements on the high-Tc cuprate (Ca_xLa_{1-x})(Ba_{1.75 - x}La_{0.25 + x})Cu_3O_y, for four different families (different x). Using Knight shift data, we show that the pseudogap lines for all families are…

超导电性 · 物理学 2014-08-14 T. Cvitanic , D. Pelc , M. Pozek , E. Amit , A. Keren

Within the two-leg $t$-J ladder, the spin dynamics of the pressure-induced two-leg ladder cuprate superconductor Sr$_{14-x}$Ca$_{x}$Cu$_{24}$O$_{41}$ is studied based on the kinetic energy driven superconducting mechanism. It is shown that…

超导电性 · 物理学 2015-05-28 Jihong Qin , Yu Lan , Shiping Feng

A 63Cu NMR study of Pb-doped Bi:2201 system, Bi1.6Pb0.4Sr2.05CuOy, is presented. Temperature dependencies of the NMR peak shift and the nuclear spin-lattice relaxation rate revealed the pseudogap that opens at T* = 20 - 60 K, way above the…

超导电性 · 物理学 2015-09-10 O. N. Bychina , A. N. Maljuk , S. Wurmehl , B. Buechner , O. M. Vyaselev

We present $^{57}$Fe-NMR measurements of the novel normal and superconducting-state characteristics of the iron-arsenide superconductor Ba$_{0.6}$K$_{0.4}$Fe$_2$As$_2$ ($T_c$ = 38 K). In the normal state, the measured Knight shift and…

超导电性 · 物理学 2009-10-01 M. Yashima , H. Nishimura , H. Mukuda , Y. Kitaoka , K. Miyazawa , P. M. Shirage , K. Kiho , H. Kito , H. Eisaki , A. Iyo

From measurements of the ^{63}Cu Knight shift (K) and the nuclear spin-lattice relaxation rate (1/T_{1}) under magnetic fields from zero up to 28 T in the slightly overdoped superconductor TlSr_{2}CaCu_{2}O_{6.8} (T_{c}=68 K), we find that…

The superconducting gap symmetry is investigated by $^{125}$Te NMR measurements on Sc$_6M$Te$_2$ ($M$ = Fe, Co) without spatial inversion symmetry. The spin susceptibility obtained from the Knight shift $K$ is suppressed below the…

Pressure-induced superconductivity was studied for a spin-ladder cuprate Sr$_2$Ca$_{12}$Cu$_{24}$O$_{41}$ using nuclear magnetic resonance (NMR) under pressures up to the optimal pressure 3.8 GPa. Pressure application leads to a…

超导电性 · 物理学 2009-09-12 N. Fujiwara , Y. Fujimaki , S. Uchida , K. Matsubayashi , T. Matsumoto , Y. Uwatoko

We study the temperature and doping evolution of the NMR Knight shift, spin relaxation rate, and spin echo decay time in the pseudogap regime of the two-dimensional Hubbard model for parameters believed to be relevant to cuprate…

强关联电子 · 物理学 2017-04-10 Xi Chen , J. P. F. LeBlanc , Emanuel Gull

We report bulk superconductivity (SC) in Ca$_3$Ir$_4$Sn$_{13}$ by means of $^{119}$Sn nuclear magnetic resonance (NMR) experiments. Two classical signatures of BCS superconductivity in spin-lattice relaxation rate ($1/T_1$), namely the…

We report $^{195}$Pt-NMR and $^{75}$As-NQR measurements for the locally non-centrosymmetric superconductor SrPtAs where the As-Pt layer breaks inversion symmetry while globally the compound is centrosymmetric. The nuclear spin lattice…

超导电性 · 物理学 2014-04-18 K. Matano , K. Arima , S. Maeda , Y. Nishikubo , K. Kudo , M. Nohara , Guo-qing Zheng

We study magnetic and electronic properties of two-leg ladder materials. We observed a two-magnon (2M) resonance which we analyze in terms of symmetry, relaxation and resonance properties. Our findings were contrasted to 2M Raman…

强关联电子 · 物理学 2007-05-23 A. Gozar , G. Blumberg

In recent years, the study of ladder materials has developed into a well-established area of research within the general context of Strongly Correlated Electrons. This effort has been triggered by an unusual cross-fertilization between…

强关联电子 · 物理学 2009-10-31 Elbio Dagotto

We report on NMR measurements in underdoped Pb2Sr2(Y,Ca)Cu3O8+d crystals. A pseudogap is observed in the Knight shift and spin-lattice relaxation rate. In contrast to other underdoped compounds, the pseudogap observed in the Knight shift is…

超导电性 · 物理学 2009-10-30 Ya-Wei Hsueh , B. W. Statt , M. Reedyk , J. S. Xue , J. E. Greedan

We report both 23Na and 75As NMR studies on hole-doped Ca1-xNaxFe2As2 superconducting single crystals (x\approx 0.67) with Tc =32 K. Singlet superconductivity is suggested by a sharp drop of the Knight shift 75K below Tc. The spin-lattice…

超导电性 · 物理学 2013-04-26 Long Ma , J. S. Zhang , D. M. Wang , J. B. He , T. -L. Xia , G. F. Chen , Weiqiang Yu

We report the results from a thermopower and a Cu nuclear magnetic resonance (NMR) study of the infinite CuO2 layer electron doped high temperature superconducting cuprate (HTSC), Sr0.9La0.1CuO2. We find that the temperature dependence of…

超导电性 · 物理学 2009-11-07 G. V. M. Williams , R. Dupree , A. Howes , S. Kramer , H. J. Trodahl , C. U. Jung , Min-Seok Park , Sung-Ik Lee
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