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We report a detailed inelastic neutron scattering study of the collective magnetic excitations of overdoped superconducting La(1.78)Sr(0.22)CuO(4) for the energy range 0-160 meV. Our measurements show that overdoping suppresses the strong response present for optimally doped La(2-x)Sr(x)CuO(4) which is peaked near 50 meV. The remaining response is peaked at incommensurate wave vectors for all energies investigated. We observe a strong high-frequency magnetic response for E approximately >80 meV suggesting that significant antiferromagnetic exchange couplings persist well into the overdoped part of the cuprate phase diagram. 相似文献
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Lipscombe OJ Chen GF Fang C Perring TG Abernathy DL Christianson AD Egami T Wang N Hu J Dai P 《Physical review letters》2011,106(5):057004
We use neutron scattering to show that spin waves in the iron chalcogenide Fe(1.05)Te display novel dispersion clearly different from both the first principles density functional calculations and recent observations in the related iron pnictide CaFe(2)As(2). By fitting to a Heisenberg Hamiltonian, we find that although the nearest-neighbor exchange couplings in the two systems are quite different, their next-nearest-neighbor (NNN) couplings are similar. This suggests that superconductivity in the pnictides and chalcogenides share a common magnetic origin that is intimately associated with the NNN magnetic coupling between the irons. 相似文献
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Through the use of the Novikov-Furutsu formula for Gaussian processes an equation is obtained for the diffusion of the ensemble average of a passive scalar in an incompressible turbulent velocity field in terms of the two-point, two-time correlator of this field. The equation is valid for turbulence which is not necessarily homogeneous or stationary and thus generalizes previous work. 相似文献
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A.E. Beezer W.H. Hunter R.P. Lipscombe R.D. Newell D.E. Storey 《Thermochimica Acta》1982,55(3):345-349
A twin, automatic microtitration assembly suitable for use with an LKB Batch Microcalorimeter is described. The apparatus, which can accurately and reproducibly deliver volumes as low as 1 μl, permits up to 20 titration additions to be made. It has been tested by the determination of the heat of ionisation of water at 303.15±0.01 K. The value determined compares favourably with the “best” value reported in the literature. 相似文献
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