Luis F, Campo J, Gómez J, McIntyre G J, Luzón J, Ruiz-Molina D
Instituto de Ciencia de Materiales de Aragón, CSIC-Universidad de Zaragoza, 50009 Zaragoza, Spain.
Phys Rev Lett. 2005 Nov 25;95(22):227202. doi: 10.1103/PhysRevLett.95.227202. Epub 2005 Nov 21.
We use neutron diffraction to probe the magnetization components of a crystal of Mn12 single-molecule magnets. Each of these molecules behaves, at low temperatures, as a nanomagnet with spin S = 10 and strong anisotropy along the crystallographic c axis. The application of a magnetic field H(perpendicular) perpendicular to c induces quantum tunneling between opposite spin orientations, enabling the spins to attain thermal equilibrium. For T approximately < 0.9(1) K, this equilibrium state shows spontaneous magnetization, indicating the onset of ferromagnetism. These long-range magnetic correlations nearly disappear for mu0H(perpendicular) approximately > 5.5 T, possibly suggesting the existence of a quantum critical point.
我们利用中子衍射来探测Mn12单分子磁体晶体的磁化分量。这些分子中的每一个在低温下都表现为一个自旋S = 10且沿晶体学c轴具有强各向异性的纳米磁体。垂直于c轴施加磁场H(垂直)会诱导相反自旋取向之间的量子隧穿,使自旋达到热平衡。对于T约< 0.9(1) K,这种平衡态显示出自发磁化,表明铁磁性的开始。当μ0H(垂直)约> 5.5 T时,这些长程磁关联几乎消失,这可能暗示存在一个量子临界点。