铬(Cr)掺杂对硒化钡化合物结构、电子和磁性能影响的理论研究

IF 0.6 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY Indian Journal of Pure & Applied Physics Pub Date : 2023-01-01 DOI:10.56042/ijpap.v61i9.3507
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引用次数: 0

摘要

采用基于密度泛函理论(DFT)的全电位线性化增广平面波(FP-LAPW)方法研究了掺杂浓度为x=0.06、0.12和0.25时Ba1-xCrxSe化合物的结构、电子和磁性能。采用Wu-Cohen广义梯度近似(WC-GGA)交换相关电位计算结构性质,采用WC-GGA与改进的Becke-Johnson (mBJ)格式耦合研究了结构的电子和磁性能。我们的研究结果表明,Ba1-xCrxSe是半金属铁磁体(HMFs),在费米能级(EF)具有100%的自旋极化。对于所研究的化合物,随着掺杂浓度从6%增加到25%,半金属间隙逐渐缩小。所有化合物都被证实是铁磁性的,因为Cr原子能够诱导出~ 4.0 μB的积分总磁矩。通过在Ba位点上少量替换Cr,在EF上产生新的态,开发了半金属性和磁性,这使得它们具有潜在的自旋电子应用价值。
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Effects of Chromium (Cr) doping on Structural, Electronic and Magnetic Properties of Barium Selenide Compound: A Theoretical Investigation
The structural, electronics, and magnetic properties of Ba1-xCrxSe compound at doping concentrations, x=0.06, 0.12, and 0.25 were investigated using full potential linearized augmented plane wave (FP-LAPW) method based on density functional theory (DFT). The Wu-Cohen generalized-gradient approximation (WC-GGA) exchange correlation potentials were used to compute structural properties, while the electronic and magnetic properties were explored using the WC-GGA coupled with modified Becke-Johnson (mBJ) scheme. Our findings show that Ba1-xCrxSe are half-metallic ferromagnets (HMFs) having 100% spin polarization at Fermi level (EF). For investigated compounds, the half-metallic gap gets narrow out as doping concentration rises from 6% to 25%.All compounds are confirmed to be ferromagnetic since the Cr atom is able to induce an integral total magnetic moment of ~ 4.0 μB. By creating new states at EF as a result of fractional replacement of Cr at Ba site, half-metallicity and magnetism get developed, which makes them potentially relevant for spintronic applications.
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来源期刊
CiteScore
1.30
自引率
14.30%
发文量
42
审稿时长
7 months
期刊介绍: Started in 1963, this journal publishes Original Research Contribution as full papers, notes and reviews on classical and quantum physics, relativity and gravitation; statistical physics and thermodynamics; specific instrumentation and techniques of general use in physics, elementary particles and fields, nuclear physics, atomic and molecular physics, fundamental area of phenomenology, optics, acoustics and fluid dynamics, plasmas and electric discharges, condensed matter-structural, mechanical and thermal properties, electronic, structure, electrical, magnetic and optical properties, cross-disciplinary physics and related areas of science and technology, geophysics, astrophysics and astronomy. It also includes latest findings in the subject under News Scan.
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