Object

Title: Ab Initio Study of Structural, Electronic, Optical, and Elastic Properties of YNₓBi1–x and YAsₓBi1–x Alloys for Infrared and Visible Optoelectronic Application

Publication Details:

Լույս է տեսնում 1966 թվականից՝ տարին 4 անգամ։

Journal or Publication Title:

ՀՀ ԳԱԱ Տեղեկագիր: Ֆիզիկա = Proceedings of the NAS RA: Physics

Date of publication:

2025

Volume:

60

Number:

4

ISSN:

0002-3035

Official URL:


Contributor(s):

Պատ․ խմբ․՝ Գ․ Մ․ Ղարիբյան (1966-1992) ; Գլխ․ խմբ․՝ Վ․ Մ․ Հարությունյան (1993-2021) ; Կ․ Մ․ Ղամբարյան (2022-)

Coverage:

601–602

Abstract:

This paper presents a pioneering first-principles investigation into the structural, elastic, electronic, and optical properties of novel ternary alloys YNxBi1–x and YAsxBi1–x which are considered promising candidates for advanced photonic and electronic applications. We employed the full-potential linearized augmented plane wave (FP-LAPW) method, based on density functional theory (DFT), as implemented in the WIEN2K simulation code, for compounds crystallizing in the NaCl-type structure. Structural properties, including lattice constants, bulk modulus and elastic properties, such as elastic constants, shear modulus, anisotropy factor, Poisson's ratio, Young’s modulus, and the Kleinman parameter were calculated using the generalized gradient approximation (GGA) for the exchange-correlation (XC) potential. Furthermore, the Wu-Cohen generalized gradient approximation (WC-GGA) and the modified Becke and Johnson (mBJ) approaches were applied to examine electronic (band structure) and optical (real and imaginary parts of the dielectric function, refractive index) properties, respectively. These findings highlight the significant potential of these materials for use in advanced optoelectronic technologies, opening new avenues for future innovation.

Format:

pdf

Identifier:

click here to follow the link ; oai:arar.sci.am:426042

Call number:

АЖ 415

Location of original object:

ՀՀ ԳԱԱ Հիմնարար գիտական գրադարան

Object collections:

Last modified:

Jan 16, 2026

In our library since:

Jan 14, 2026

Number of object content hits:

34

All available object's versions:

https://arar.sci.am/publication/458876

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