arXiv · 0808.0802
Identification of Nodal Kink in Electron-Doped (Nd$_{1.85}$Ce$_{0.15}$)CuO$_4$ Superconductor from Laser-Based Angle-Resolved Photoemission Spectroscopy
Abstract
High-resolution laser-based angle-resolved photoemission measurements have been carried out on the electron-doped (Nd$_{1.85}$Ce$_{0.15}$)CuO$_4$ high temperature superconductor. We have revealed a clear kink at $\sim$60 meV in the dispersion along the (0,0)-($\pi$,$\pi$) nodal direction, accompanied by a peak-dip-hump feature in the photoemission spectra. This indicates that the nodal electrons are coupled to collective excitations (bosons) in electron-doped superconductors, with the phonons as the most likely candidate of the boson. This finding has established a universality of nodal electron coupling in both hole- and electron-doped high temperature cuprate superconductors.
Explore related subjects
Keep this discovery
Haiyun Liu, Guodong Liu, Wentao Zhang, Lin Zhao, Jianqiao Meng, Xiaowen Jia, Xiaoli Dong, Wei Lu, Guiling Wang, Yong Zhou, Yong Zhu, Xiaoyang Wang, Tao Wu, Xianhui Chen, T. Sasagawa, Zuyan Xu, Chuangtian Chen, X. J. Zhou. 2008-08-06. Identification of Nodal Kink in Electron-Doped (Nd$_{1.85}$Ce$_{0.15}$)CuO$_4$ Superconductor from Laser-Based Angle-Resolved Photoemission Spectroscopy. https://arxiv.org/abs/0808.0802
Cite the original work for its findings. Save a collection to share your selection of sources.