Journal of Applied Physics
Articles in this Issue
Opto-electronic and mechanical properties of (CdxZn1−x)2SnO4 in the cubic and orthorhombic phases using first-principles methods
We have computationally studied the cubic and orthorhombic (CdxZn1−x)2SnO4 alloy systems (x = 0.00, 0.25, 0.50, 0.75, and 1.00) and investigated their structural, mechanical, vibrational, and opto-ele...
The effect of charge carrier doping on electric polarization and mobility in bilayer NiCl2
Based on first-principles calculations, we discuss the effects of charge carrier doping on polarization and electron mobility in the bilayer sliding ferroelectric material NiCl2. The bilayer NiCl2 bel...
Continuum modeling of radiation-induced degradation in superconductors
Realizing the promise of nuclear fusion requires confining plasma at millions of degrees, a feat achievable only through high-field superconducting magnets. However, the fusion reaction itself generat...
Dual-frequency Doppler-free crossover resonance with suppressed magnetic-field sensitivity for compact optical clocks
We report the observation and characterization of a high-contrast dual-frequency Doppler-free ground-state crossover resonance in the D1 line of 87Rb. The crossover appears at the two-photon detuning...
Femtosecond ultrafast dynamics simulations of typical semiconductor materials under swift heavy ion irradiation
Swift heavy ion (SHI) irradiation has long been used to evaluate the performance of radiation-hard semiconductor devices. However, the in-depth insight into its microscopic processes and damage evolut...
A triple-axis hybrid-linearity selective gradient field system design in magnetic hyperthermia: Providing a spheroidal shaped field-free region
Magnetic nanoparticles (MNPs) have emerged as transformative agents in precision oncology due to their tumor-targeting specificity, non-invasive nature, and biocompatibility, particularly in magnetic...
A microscopic understanding of the magnetism in Fe3GeTe2 with mono-atomic vacancies
Fe3GeTe2 (FGT) is a promising two-dimensional van der Waals magnet known for its metallic conductivity and relatively high Curie temperature (Tc). Structural defects, particularly mono-atomic vacancie...
Temperature-dependent microstructure, ferroelectric, and energy storage performance of sol-gel Hf0.5Zr0.5O2 thin films
In recent years, hafnium–zirconium oxide systems have drawn intensive attention as energy storage capacitors owing to their excellent electrical properties and complementary metal–oxide–semiconductor...
Topological properties of Au-based superconducting A15 compounds: Unveiling Dirac surface states and spin Hall effects
Interest in exploring the topological properties of superconducting compounds is growing, as this can provide valuable insights into the realization of topological superconductivity. In this study, we...
Low-energy ion beam sputtering of polycrystalline diamond
Ion beam milling is a highly versatile and precise technique for the microfabrication of diamond films, enabling controlled material removal at both micrometer and sub-micrometer scales while accommod...
A high-efficiency, ultra-wideband absorber with wide-angle stability
In this work, we propose a high-efficiency, ultra-wideband absorber with wide-angle stability in the microwave regime. The designed absorber consists of copper octagonal split-rings with chip resistor...