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自旋-1中子共振峰无法解释铜酸盐超导体中的电子异常现象。

Spin-1 neutron resonance peak cannot account for electronic anomalies in the cuprate superconductors.

作者信息

Kee Hae-Young, Kivelson Steven A, Aeppli G

机构信息

Department of Physics, University of California-Los Angeles, Los Angeles, California 90095-1547, USA.

出版信息

Phys Rev Lett. 2002 Jun 24;88(25 Pt 1):257002. doi: 10.1103/PhysRevLett.88.257002. Epub 2002 Jun 6.

Abstract

In certain cuprates, a spin-1 resonance mode is prominent in the magnetic structure measured by neutron scattering. It has been proposed that this mode is responsible for significant features seen in other spectroscopies, such as photoemission and optical absorption, which are sensitive to the charge dynamics, and even that this mode is the boson responsible for "mediating" the superconducting pairing. We show that its small (measured) intensity and weak coupling to electron-hole pairs (as deduced from the measured lifetime) disqualifies the resonant mode from either proposed role.

摘要

在某些铜酸盐中,自旋为1的共振模式在通过中子散射测量的磁结构中很突出。有人提出,这种模式是其他光谱学中所见显著特征的原因,比如对电荷动力学敏感的光电子能谱和光吸收,甚至有人认为这种模式就是负责“介导”超导配对的玻色子。我们表明,其(测量得到的)强度小,且与电子 - 空穴对的耦合弱(从测量得到的寿命推断),这使得该共振模式无法胜任上述任何一种被提出的角色。

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