摘要
采用纠缠的度量方法Negativity研究了匀强磁场下自旋为1的含杂质三粒子Heisenberg XXX链的热纠缠特性.通过计算系统的杂质位与其余部分间的两体纠缠N1-23及正常位与其余部分间的两体纠缠N12-3,发现纠缠存在的临界温度Tc的改变来自杂质参数J1的变化,随杂质参数J1的增加而增加,外界磁场B的存在会降低纠缠值,但并不会改变临界温度.可以通过调节杂质参数J1和外界磁场B来控制两体纠缠N1-23和N12-3的大小.
We investigate the impurity entanglement of 3-qutrit XXX-type Heisenberg chains in the presence of a uniform magnetic field along z axis by means of negativity. The entanglement is calculated as a function of the coupling constants J, impurity parameter J1, magnetic fields B and temperature T. Through calculating the negativity between sites 1 and (2,3) N1-23 and sites 3 and (1,2) N12-3, we show that the critical temperature Tc above which the entanglement vanishes increases with the increase of J1. The existence of magnetic fields B can obviously reduce the entanglement, and it is found that the limiting temperature Tc depends on the impurity parameter J1 but not on the magnetic field.
出处
《物理学报》
SCIE
EI
CAS
CSCD
北大核心
2008年第9期5395-5399,共5页
Acta Physica Sinica
基金
陕西省自然科学研究计划(批准号:2004A15)资助的课题~~