Chin. Phys. Lett.  2013, Vol. 30 Issue (6): 067401    DOI: 10.1088/0256-307X/30/6/067401
CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
Electronic Band Profile and Optical Response of Spinel MgIn2O4 through Modified Becke–Johnson Potential
A. Manzar1, G. Murtaza2**, R. Khenata3,4, S. Muhammad1, Hayatullah1
1Department of Physics, Hazara University Mansehra, KPK, Pakistan
2Materials Modeling Lab, Department of Physics, Islamia College University, Peshawar, Pakistan
3LPQ3M Laboratory, Institute of Science and Technology, University of Mascara, Algeria
4Department of Physics and Astronomy, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi Arabia
Cite this article:   
A. Manzar, G. Murtaza, R. Khenata et al  2013 Chin. Phys. Lett. 30 067401
Download: PDF(924KB)  
Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks
Abstract We employ the first-principles technique based on the modified Becke–Johnson (BJ) exchange potential for the prediction of the electronic band structure, optical properties, and electron density of the cubic MgIn2O4 spinel compound. It is found that the calculated band gap value with the modified BJ approximation is significantly improved over the results based on the generalized gradient approximation and the local density approximation in comparison to the experimental data. The band gap dependent optical parameters such as the dielectric constant, refractive index, reflectivity, optical conductivity, and electron density are predicted. The optical response suggests that MgIn2O4 is an applicant material in optoelectronic devices in various parts of the energy spectrum like MgAl2O4 and MgGa2O4.
Received: 10 February 2013      Published: 31 May 2013
PACS:  74.20.Pq (Electronic structure calculations)  
  74.25.Gz (Optical properties)  
  71.15.Mb (Density functional theory, local density approximation, gradient and other corrections)  
TRENDMD:   
URL:  
https://cpl.iphy.ac.cn/10.1088/0256-307X/30/6/067401       OR      https://cpl.iphy.ac.cn/Y2013/V30/I6/067401
Service
E-mail this article
E-mail Alert
RSS
Articles by authors
A. Manzar
G. Murtaza
R. Khenata
S. Muhammad
Hayatullah
[1] Amin B et al 2012 Physica B 407 2588
[2] Hosseini M S 2008 Phys. Status Solidi B 245 2800
[3] Wei H S and Zhang B S 2001 Phys. Rev. B 63 045112
[4] Shang-Di Mo and Ching Y W 1996 Phys. Rev. B 54 16555
[5] Khenata R et al 2005 Phys. Lett. A 344 271
[6] Yong- Nian X and Ching Y W 1991 Phys. Rev. B 43 4461
[7] Wanner A 1998 Mater. Sci. Eng. A 248 35
[8] Martin P A et al 2000 Phys. Rev. B 62 13970
[9] Aksel C et al 2002 J. Eur. Ceram. Soc. 22 745
[10] Yoneda Y 1990 J. Phys. Earth 38 19
[11] Chopelas A 1996 Phys. Chem. Minerals 23 25
[12] Thibaudeau P and Gervais F 2002 J. Phys. Condens. Matter 14 3543
[13] Ibarra A et al 1996 J. Nucl. Mater. 233-237 1336
[14] Afanasyev-Charkin I V et al 2000 Vacuum 58 2
[15] Suzuki T et al 2005 J. Lumin. 113 265
[16] Khenata R et al 2006 Algerian J. Adv. Mater. 3 171
[17] Leger M J et al 1996 Nature 383 401
[18] Jones W and Miles J L 1971 Proc. Br. Ceram. Soc. 19 161
[19] Bouhemadou A et al 2007 Eur. Phys. J. B 56 1
[20] Mo D S and Ching Y W 1996 Phys. Rev. B 54 16555
[21] Koller D et al 2011 Phys. Rev. B 83 195134
[22] Engel E 2009 Phys. Rev. B 80 161205
[23] Anisimov I V et al 1991 Phys. Rev. B 44 943
[24] Tran F and Blaha P 2009 Phys. Rev. Lett. 102 226401
[25] Becke D A and Johnson R E 2006 J. Chem. Phys. 124 221101
[26] Tran F et al 2007 J. Phys. Condens. Matter. 19 196208
[27] Kohan W and S L Sham 1965 Phys. Rev. 140 A1133
[28] Andersen K O 1975 Phys. Rev. B 12 3060
[29] Blaha P et al (Institute of Material Chemistry, TU Vienna) http://www.wien2k.at/
[30] Esther D S et al 1998 J. Mater. Sci. Lett. 17 619
[31] Penn D 1962 Phys. Rev. 128 2093
[32] Manzar A et al 2013 Chin. Phys. Lett. 30 047401
Related articles from Frontiers Journals
[1] Liu Yang, Ya-Ping Li, Hao-Dong Liu, Na Jiao, Mei-Yan Ni, Hong-Yan Lu, Ping Zhang, and C. S. Ting. Theoretical Prediction of Superconductivity in Boron Kagome Monolayer: $M$B$_{3}$ ($M$ = Be, Ca, Sr) and the Hydrogenated CaB$_{3}$[J]. Chin. Phys. Lett., 2023, 40(1): 067401
[2] Yiding Liu, Qiang Fan, Jianhui Yang, Lili Wang, Weibin Zhang, and Gang Yao. Predicted High-Temperature Superconductivity in Rare Earth Hydride ErH$_{2}$ at Moderate Pressure[J]. Chin. Phys. Lett., 2022, 39(12): 067401
[3] Yuhao Gu, Kun Jiang, Xianxin Wu, and Jiangping Hu. Cobalt-Dimer Nitrides: A Potential Novel Family of High-Temperature Superconductors[J]. Chin. Phys. Lett., 2022, 39(9): 067401
[4] Lin Feng, Chen-Chen Guo, Xue-Ying Zhang, Hai-Cheng Xuan, Wen-Hong Wang, En-Ke Liu, Guang-Heng Wu. Possible Martensitic Transformation in Heusler Alloy Pt$_{2}$MnSn from First Principles[J]. Chin. Phys. Lett., 2018, 35(3): 067401
[5] LIANG Yi, WU Xian-Xin, HU Jiang-Ping. Electronic Structure Properties in the Nematic Phases of FeSe[J]. Chin. Phys. Lett., 2015, 32(11): 067401
[6] XU Di-Fei, DU Yong-Ping, WANG Zhen, LI Yu-Peng, NIU Xiao-Hai, YAO Qi, Dudin Pavel, XU Zhu-An, WAN Xian-Gang, FENG Dong-Lai. Observation of Fermi Arcs in Non-Centrosymmetric Weyl Semi-Metal Candidate NbP[J]. Chin. Phys. Lett., 2015, 32(10): 067401
[7] WU Xian-Xin, LE Cong-Cong, YUAN Jing, FAN Heng, HU Jiang-Ping. Magnetism in Quasi-One-Dimensional A2Cr3As3 (A=K,Rb) Superconductors[J]. Chin. Phys. Lett., 2015, 32(5): 067401
[8] A. Manzar, G. Murtaza, R. Khenata, Masood Yousaf, S. Muhammad, Hayatullah. Electronic and Optic Properties of Cubic Spinel CdX2O4 (X=In, Ga, Al) through Modified Becke–Johnson Potential[J]. Chin. Phys. Lett., 2014, 31(06): 067401
[9] A. Manzar, G. Murtaza, R. Khenata, S. Muhammad, Hayatullah. Electronic and Optical Properties of Spinel GeMg2O4 and GeCd2O4[J]. Chin. Phys. Lett., 2013, 30(12): 067401
[10] Masood Yousaf, M. A. Saeed, Ahmad Radzi Mat Isa, H. A. Rahnamaye Aliabad, M. R. Sahar . An Insight into the Structural, Electronic and Transport Characteristics of XIn2S4 (X = Zn, Hg) Thiospinels using a Highly Accurate All-Electron FP-LAPW+Lo Method[J]. Chin. Phys. Lett., 2013, 30(7): 067401
[11] A. Manzar, G. Murtaza, R. Khenata, S. Muhammad, Hayatullah. Electronic Band Structure and Optical Response of Spinel SnX2O4 (X = Mg, Zn) through Modified Becke–Johnson Potential[J]. Chin. Phys. Lett., 2013, 30(4): 067401
[12] Masood Yousaf, M. A. Saeed, Ahmad Radzi Mat Isa, Amiruddin Shaari, H. A. Rahnamaye Aliabad. Electronic Band Structure and Optical Parameters of Spinel SnMg2O4 by Modified Becke–Johnson Potential[J]. Chin. Phys. Lett., 2012, 29(10): 067401
[13] DAI Jun, LI Zhen-Yu, YANG Jin-Long. Electron-phonon Coupling in Gallium-Doped Germanium[J]. Chin. Phys. Lett., 2010, 27(8): 067401
Viewed
Full text


Abstract