The First-Principles Investigation of Structural Stability, Mechanical, Vibrational, Thermodynamic, and Optical Properties of CaHfS3 for Optoelectronic Application

IF 1.5 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER Advances in Condensed Matter Physics Pub Date : 2023-02-23 DOI:10.1155/2023/9332399
Mulugetta Kassa, N. Debelo, M. Woldemariam
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Abstract

In this study, the structural, electronic, elastic, phonon vibration, thermodynamic features, and optical properties of the orthorhombic phase of (space group Pnma) C a H f S 3 were examined by first-principles calculations utilizing the plane wave ultrasoft pseudopotentials in generalized gradient approximations (GGAs) and with Hubbard on-site correction (DFT + U). To improve the value of the band gap, the exchange correlation potential is also approximated with Hubbard correction (GGA + U). The equilibrium state properties such as lattice parameters, unit cell volume, bulk modulus, and its derivative were calculated and are in good agreement with the existing data. The mechanical properties such as bulk modulus, shear modulus, Young’s modulus, and elastic anisotropy were determined from the obtained elastic constants. The ratio of bulk modulus to shear modulus confirms that the orthorhombic phase of C a H f S 3 is a ductile material. In addition, the longitudinal sound velocity, transverse sound velocity, and Debye temperature for C a H f S 3 have been computed. The absence of negative frequencies in the phonon dispersion curve and the phonon density of states confirm that C a H f S 3 in the orthorhombic phase is dynamically stable. The thermodynamic parameters such as free energy, entropy, and heat capacity were examined with variations in temperature. Finally, the absorption coefficient, dielectric constant, energy loss function, reflectivity, and refractive index are discussed in detail in the spectral range 0–1.6 Ry (21.77 eV). The polarizations along (100), (010), and (001) directions significantly show different optical responses.
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光电应用CaHfS3的结构稳定性、力学、振动、热力学和光学性质的第一性原理研究
本研究利用平面波超软赝势在广义梯度近似(GGAs)和Hubbard现场校正(DFT + U)下的第一性原理计算,研究了(空间群)Pnma C a H f S 3正交相的结构、电子、弹性、声子振动、热力学特征和光学性质。为了提高带隙值,交换相关电位也用Hubbard校正(GGA + U)逼近。计算了晶格参数、单体胞体积、体积模量及其导数等平衡态性质,与已有数据吻合较好。根据得到的弹性常数确定了材料的体模量、剪切模量、杨氏模量和弹性各向异性等力学性能。体积模量与剪切模量的比值证实了C a H f S 3的正交相是一种延性材料。此外,还计算了C a H f S 3的纵向声速、横向声速和德拜温度。声子色散曲线中不存在负频率和态的声子密度,证实了正交相中的C a H f S 3是动态稳定的。热力学参数如自由能、熵和热容随温度的变化而变化。最后,详细讨论了0 ~ 1.6 Ry (21.77 eV)光谱范围内的吸收系数、介电常数、能量损失函数、反射率和折射率。沿(100)、(010)和(001)方向的偏振表现出明显不同的光学响应。
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来源期刊
Advances in Condensed Matter Physics
Advances in Condensed Matter Physics PHYSICS, CONDENSED MATTER-
CiteScore
2.30
自引率
0.00%
发文量
33
审稿时长
6-12 weeks
期刊介绍: Advances in Condensed Matter Physics publishes articles on the experimental and theoretical study of the physics of materials in solid, liquid, amorphous, and exotic states. Papers consider the quantum, classical, and statistical mechanics of materials; their structure, dynamics, and phase transitions; and their magnetic, electronic, thermal, and optical properties. Submission of original research, and focused review articles, is welcomed from researchers from across the entire condensed matter physics community.
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