Wilson Stephen D, Li Shiliang, Zhao Jun, Mu Gang, Wen Hai-Hu, Lynn Jeffrey W, Freeman Paul G, Regnault Louis-Pierre, Habicht Klaus, Dai Pengcheng
Department of Physics and Astronomy, University of Tennessee, Knoxville, TN 37996-1200, USA.
Proc Natl Acad Sci U S A. 2007 Sep 25;104(39):15259-63. doi: 10.1073/pnas.0704822104. Epub 2007 Sep 20.
The quantum spin fluctuations of the S = 1/2 Cu ions are important in determining the physical properties of high-transition-temperature (high T(c)) copper oxide superconductors, but their possible role in the electron pairing of superconductivity remains an open question. The principal feature of the spin fluctuations in optimally doped high-T(c) superconductors is a well defined magnetic resonance whose energy (E(R)) tracks T(c) (as the composition is varied) and whose intensity develops like an order parameter in the superconducting state. We show that the suppression of superconductivity and its associated condensation energy by a magnetic field in the electron-doped high-T(c) superconductor Pr(0.88)LaCe(0.12)CuO(4-delta) (T(c) = 24 K), is accompanied by the complete suppression of the resonance and the concomitant emergence of static antiferromagnetic order. Our results demonstrate that the resonance is intimately related to the superconducting condensation energy, and thus suggest that it plays a role in the electron pairing and superconductivity.
S = 1/2铜离子的量子自旋涨落在决定高转变温度(高Tc)铜氧化物超导体的物理性质方面很重要,但其在超导电子配对中可能扮演的角色仍是一个悬而未决的问题。最佳掺杂的高Tc超导体中自旋涨落的主要特征是一个定义明确的磁共振,其能量(E(R))随温度Tc变化(随着成分改变),并且其强度在超导态下像一个序参量一样发展。我们表明,在电子掺杂的高Tc超导体Pr(0.88)LaCe(0.12)CuO(4-δ)(Tc = 24 K)中,磁场对超导性及其相关凝聚能的抑制伴随着共振的完全抑制以及静态反铁磁序的同时出现。我们的结果表明,该共振与超导凝聚能密切相关,因此表明它在电子配对和超导性中发挥作用。