Chan M K, Tang Y, Dorow C J, Jeong J, Mangin-Thro L, Veit M J, Ge Y, Abernathy D L, Sidis Y, Bourges P, Greven M
School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Pulsed Field Facility, National High Magnetic Field Laboratory, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev Lett. 2016 Dec 30;117(27):277002. doi: 10.1103/PhysRevLett.117.277002. Epub 2016 Dec 29.
We use neutron scattering to study magnetic excitations near the antiferromagnetic wave vector in the underdoped single-layer cuprate HgBa_{2}CuO_{4+δ} (superconducting transition temperature T_{c}≈88 K, pseudogap temperature T^{}≈220 K). The response is distinctly enhanced below T^{} and exhibits a Y-shaped dispersion in the pseudogap state, whereas the superconducting state features an X-shaped (hourglass) dispersion and a further resonancelike enhancement. A large spin gap of about 40 meV is observed in both states. This phenomenology is reminiscent of that exhibited by bilayer cuprates. The resonance spectral weight, irrespective of doping and compound, scales linearly with the putative binding energy of a spin exciton described by an itinerant-spin formalism.
我们利用中子散射来研究欠掺杂单层铜酸盐HgBa₂CuO₄₊δ(超导转变温度Tc≈88 K,赝能隙温度T*≈220 K)中反铁磁波矢附近的磁激发。在T*以下,响应明显增强,并且在赝能隙态呈现Y形色散,而超导态的特征是X形(沙漏形)色散以及进一步的类似共振增强。在这两种状态下均观察到约40毫电子伏的大自旋能隙。这种现象学让人联想到双层铜酸盐所表现出的现象。共振谱权重与巡游自旋形式描述的自旋激子的假定结合能成线性比例,与掺杂和化合物无关。