Topological phase transitions of (BixSb1−x)2Se3 alloys by density functional theory

2015 ◽  
Vol 27 (25) ◽  
pp. 255501 ◽  
Author(s):  
L B Abdalla ◽  
E Padilha José ◽  
T M Schmidt ◽  
R H Miwa ◽  
A Fazzio
2018 ◽  
Vol 27 (03) ◽  
pp. 1850024 ◽  
Author(s):  
Afaque Karim ◽  
Tabassum Naz ◽  
Shakeb Ahmad

A systematic search of the shape phase transitions and isotopic shift of the neutron-rich barium (Ba; [Formula: see text]) isotopes, as a candidate for transitional nuclei, is done within the covariant density functional theory (CDFT). The relativistic Hartree–Bogoliubov (RHB) formalism with separable pairing and relativistic mean-field (RMF) with BCS pairing are used. The constraint calculations assuming the axial symmetry as well as triaxial symmetry clearly manifest the shape coexistence and the transitional behavior in these nuclei. A strong shell closure is observed at [Formula: see text] and weaker shell/subshell closure is observed at [Formula: see text]. Shape transition below and above the shell closure location at [Formula: see text] (from prolate to spherical to prolate) is there. The candidates for [Formula: see text] and [Formula: see text] dynamical symmetries are found to be [Formula: see text]Ba, [Formula: see text]Ba and [Formula: see text]Ba, [Formula: see text]Ba nuclei, respectively. The calculated results are compared with the available experimental data and are in good agreement. We have investigated the model dependence as well as dependence on various model parameters. A comparison is made with other theoretical models: infinite nuclear matter (INM) model, macro–microscopic finite-range droplet model (FRDM) and the self-consistent Hartree–Fock–Bogoliubov (HFB) model. Overall good agreement is found within the different models used and between the calculated and experimental results.


RSC Advances ◽  
2018 ◽  
Vol 8 (49) ◽  
pp. 27995-28001 ◽  
Author(s):  
Yi-zhen Jia ◽  
Wei-xiao Ji ◽  
Chang-wen Zhang ◽  
Ping Li ◽  
Pei-ji Wang

Based on density functional theory (DFT) calculations, we propose a new type of 2D asymmetric NaXBi (X = Sn and Pb) monolayer, which can realize the coexistence of a topological phase and the Rashba effect.


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