Single crystals of (Cd1−xZnx)3As2 were synthesized from high-temperature solutions and characterized in terms of their structural and electrical properties. Based on the measurements of resistivity and Hall signals, we revealed a chemical-doping-controlled transition from a three dimensional Dirac semimetal to a semiconductor with a critical point xc/sim0.38. We observed structural transitions from a body-center tetragonal phase to a primary tetragonal phase then back to a body-center tetragonal phase in the solid solutions as well, which are irrelevant to the topological phase transition. This continuously tunable system controlled by chemical doping provides a platform for investigating the topological quantum phase transition of 3D Dirac electrons.
@article{arxiv.1507.07169,
title = {Topological Phase Transition in Single Crystals of $(Cd_{1-x} Zn_x)_3 As_2$},
author = {Hong Lu and Xiao Zhang and Shuang Jia},
journal= {arXiv preprint arXiv:1507.07169},
year = {2017}
}