Effect of hydrostatic strain on the mechanical properties and topological phase transition of bi-alkali pnictogen NaLi2Bi

Author:

Malek Hosseini Seyed Mohammad bagher,Yalameha ShahramORCID

Abstract

Abstract The bi-alkali pnictogens have attracted significant attention for optoelectronic and photocathodic device applications. However, in most of the compounds belonging to this family, there has been less effort put into investigating the mechanical properties and topological phase transitions (TPT) of the compounds. Here, in the framework of density functional theory, the mechanical properties and topological phase transition of NaLi2Bi under hydrostatic pressures are investigated. Elastic constants and phonon calculations have shown the mechanical and dynamical stability of this compound under hydrostatic tension and compression. The analysis of the elastic constants show that the NaLi2Bi in the equilibrium state is an auxetic material with a negative Poisson’s ratio of -0.285, which changes to a material with a positive Poisson’s ratio under hydrostatic tension. Meanwhile, Poisson’s ratio and Pugh ratio indicate that this compound has brittle behavior and maintains it under hydrostatic pressures. The calculated results of the band structure within the generalized gradient approximation (GGA) (Tran-Blaha modified Becke-Johnson exchange potential approximation (TB-mBJ)) show that NaLi2Bi is a nontrivial topological material (trivial topological material). It was found that hydrostatic compression (tension) in the GGA (TB-mBJ) approach leads to a transition from a nontrivial (trivial) to a trivial (nontrivial) topological phase for this compound. Moreover, the calculated Wannier charge centers confirm the TPT. Identifying the mechanisms controlling the auxetic behavior and TPT of this compound offers a valuable feature for designing and developing high-performance nanoscale electromechanical and spintronic devices.

Publisher

IOP Publishing

Subject

Condensed Matter Physics,Mathematical Physics,Atomic and Molecular Physics, and Optics

Reference58 articles.

1. CsK2Sb photocathode development for bERLinPro;Schmeißer;ERL,2015

2. Cold electron beams from cryocooled, alkali antimonide photocathodes;Cultrera;Physical Review Special Topics-Accelerators and Beams,2015

3. Demonstration of low emittance in the Cornell energy recovery linac injector prototype;Gulliford;Physical Review Special Topics-Accelerators and Beams.,2013

4. Demonstration of cathode emittance dominated high bunch charge beams in a DC gun-based photoinjector;Gulliford;Appl. Phys. Lett.,2015

5. Photoemissive photoconductive, and optical absorption studies of alkali-antimony compounds;Spicer;Phys. Rev.,1958

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