Wernsdorfer W, Chakov N E, Christou G
Laboratoire L. Néel, associé à l'UJF, CNRS, BP 166, 38042 Grenoble Cedex 9, France.
Phys Rev Lett. 2005 Jul 15;95(3):037203. doi: 10.1103/PhysRevLett.95.037203.
Magnetization measurements of Mn12 molecular nanomagnets with spin ground states of S=10 and S=19/2 show resonance tunneling at avoided energy level crossings. The observed oscillations of the tunnel probability as a function of the magnetic field applied along the hard anisotropy axis are due to topological quantum phase interference of two tunnel paths of opposite windings. Spin-parity dependent tunneling is established by comparing the quantum phase interference of integer and half-integer spin systems.
对具有S = 10和S = 19/2自旋基态的Mn12分子纳米磁体进行的磁化测量表明,在避免的能级交叉处存在共振隧穿。观察到的隧穿概率随沿硬各向异性轴施加的磁场的振荡是由于两个相反缠绕的隧穿路径的拓扑量子相位干涉引起的。通过比较整数和半整数自旋系统的量子相位干涉,确定了自旋奇偶性相关的隧穿。