Greber Thomas
Physik-Institut, Universität Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.
ACS Omega. 2024 Aug 22;9(35):37183-37187. doi: 10.1021/acsomega.4c04388. eCollection 2024 Sep 3.
Anisotropic open shell 4f ions have magnetic moments that can be read and written as atomic bits. If it comes to quantum applications where the phase of the wave function has to be written, controlled, and read, it is advantageous to rely on more than one atom that carries the quantum information on the system because states with different susceptibilities may be addressed. Such systems are realized for pairs of lanthanides in single-molecule magnets, where four pseudospin states are found and mixed in quantum tunneling processes. For the case of endohedral fullerenes like DyS@C or TbScN@C, the quantum tunneling of the magnetization is imprinted in the magnetization lifetimes at sub-Kelvin temperatures. A (4 × 4) Hamiltonian that includes quantum tunneling of the magnetization and the dipole and exchange interaction between the two lanthanide magnetic moments predicts the lifting of the zero-field ground state degeneracy and nonlinear coupling to magnetic fields in such systems.
各向异性开壳层4f离子具有可作为原子比特进行读写的磁矩。在涉及必须对波函数相位进行写入、控制和读取的量子应用中,依赖多个携带系统量子信息的原子是有利的,因为具有不同磁化率的状态可以被处理。这种系统在单分子磁体中的镧系元素对中得以实现,其中发现了四个伪自旋态并在量子隧穿过程中混合。对于像DyS@C或TbScN@C这样的内嵌富勒烯的情况,磁化的量子隧穿在亚开尔文温度下的磁化寿命中得以体现。一个包含磁化量子隧穿以及两个镧系磁矩之间的偶极和交换相互作用的(4×4)哈密顿量预测了此类系统中零场基态简并的解除以及与磁场的非线性耦合。