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首页> 外文期刊>Physical Review, B. Condensed Matter >Renormalized mean-field theory of neutron scattering in cuprate superconductors - art. no. 014502
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Renormalized mean-field theory of neutron scattering in cuprate superconductors - art. no. 014502

机译:铜酸盐超导体中子散射的重新归一化平均场理论-艺术。没有。 014502

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The magnetic excitation spectrum of the t-t'-J model is studied in mean-field theory and compared to inelastic neutron-scattering (INS) experiments on YBa2Cu3O6+y (YBCO) and Bi2Sr2CaCu2O8+delta (BSCCO) superconductors. Within the slave-particle formulation the dynamical spin response is calculated from a renormalized Fermi liquid with an effective interaction similar toJ in the magnetic particle-hole channel. We obtain the so-called "41-meV resonance" at wave vector (pi,pi) as a collective spin-l excitation in the d-wave superconducting state. It appears sharp (undamped), if the underlying Fermi surface is holelike with a sufficient next-nearest-neighbor hopping t'<0. The double-layer structure of YBCO or BSCCO is not important for the resonance to form. The resonance energy ω(res) and spectral weight at optimal doping come out comparable to experiment. The observed qualitative behavior of ω(res) with hole filling is reproduced in the underdoped as well as overdoped regime. A second, much broader peak becomes visible in the magnetic excitation spectrum if the 2D wave vector is integrated over. It is caused by excitations across the maximum gap, and in contrast to the resonance its energy is almost independent of doping. At energies above or below ω(res) the commensurate resonance splits into incommensurate peaks, located off (π,π). Below ω(res) the intensity pattern is of "parallel" type and the dispersion relation of incommensurate peaks, has a negative curvature, This is in accordance with recent INS experiments on YBCO. [References: 93]
机译:用均场理论研究了t-t'-J模型的磁激发光谱,并与YBa2Cu3O6 + y(YBCO)和Bi2Sr2CaCu2O8 + delta(BSCCO)超导体的非弹性中子散射(INS)实验进行了比较。在从属粒子配方中,动态自旋响应是根据经过重新归一化的费米液体计算出来的,其有效相互作用类似于磁性粒子-孔道中的J。我们在波向量(pi,pi)处获得了所谓的“ 41-meV共振”,作为d波超导状态下的自旋l激发。如果下面的费米表面呈孔状且下一跳相邻跳变t'<0,则看起来很锐利(未阻尼)。 YBCO或BSCCO的双层结构对于形成共振并不重要。最佳掺杂时的共振能量ω(res)和光谱权重与实验相当。在掺杂不足和掺杂过量的情况下,观察到的具有填充空穴的ω(res)的定性行为得以再现。如果将2D波矢量积分,第二个更宽的峰将在磁激发光谱中可见。它是由最大间隙上的激发引起的,与共振相反,它的能量几乎与掺杂无关。在高于或低于ω(res)的能量处,相称的共振分裂为不相称的峰,位于(π,π)的附近。在ω(res)以下,强度模式为“平行”型,并且不相称的峰的色散关系为负曲率,这与最近在YBCO上进行的INS实验一致。 [参考:93]

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