Journal of Applied Physics
Articles in this Issue
A study of dynamical regimes crossover and thermal conductivity change at grain growth in U3Si2 by phase-field modeling
Nano-sized grain growth dynamics in U3Si2 as a promising candidate for accident tolerant fuel is studied at different temperatures by phase-field modeling. Temperature dependences of incubation time f...
Periodic electromagnetic electroosmotic flow of Jeffrey fluid with slip boundary conditions between parallel plates at high zeta potential
In contrast to the conventional Debye–Hückel approach to approximate the Poisson–Boltzmann equation, the case retains the nonlinear Poisson–Boltzmann equations to investigate the periodic electromagne...
Multi-shot readout error benchmark of the nitrogen-vacancy center’s electronic qubit
The ground-state electronic spin of a negatively charged nitrogen-vacancy center in diamond can be used for room-temperature experiments showing coherent qubit functionality. At room temperature, phot...
Increasing the lifetime of polymer dielectrics in an AC field by using phosphorescent dopants: Theoretical justifications and numerical simulation
Based on the ionization mechanism of polymer degradation in an AC field and taking into account the contribution of non-radiative carrier recombination, a new method for increasing the lifetime of pol...
The heterostructure of hexagonal boron nitride with wurtzite III-nitrides for optoelectronic and electronic applications
Semiconductor heterostructures are essential for advancing modern technology, facilitating the development of more efficient and powerful electronic and optoelectronic devices. Conventional heterostru...
Unveiling the effects of Sb or Bi doping on lattice strain and Raman spectra in Mg2Si single crystals
We thoroughly investigated the Raman peaks of Sb- or Bi-doped Mg2Si single crystals grown by the vertical Bridgman techniques and clarified the relationship between the Raman peak shift and lattice st...
Reducing thermal treatment energy during carbonization in graphite preparation by optimizing magnetic orientation
The production of graphite often requires temperatures as high as 3000 K and is, therefore, energy-intensive. Reducing this energy demand while maintaining material quality is essential for sustainabl...
An assessment of the elemental segregation in equimolar AlCuFeMn medium-entropy alloy using cluster expansion and Monte Carlo simulation
Although the high-entropy effect in (near-)equimolar, multicomponent alloy systems supposedly randomize elemental distribution, experimental observations demonstrate the presence of atomic ordering an...
Characteristics of femtosecond laser induced filament and energy coupling by nanosecond laser pulse in air
This study presents a detailed plasma kinetics model for laser-induced non-equilibrium plasmas in atmospheric pressure air, incorporating a self-consistent energy balance and refined rate expressions...
Spectroscopic, morphological, and dielectric distinctions between a conjugated polymer and its incorporated monomer in field-effect transistors and capacitors
We investigate the effects of incorporating the monomer 2,5-bis(3-dodecylthiophen-2-yl)thieno[3,2-b]thiophene (BTTT) into thin films of its corresponding polymer, poly(2,5-bis(3-alkylthiophen-2-yl)thi...
A method for evaluating intrinsic mechanical quality factor <i>Q</i>m of thin solid films such as ScAlN, GaN, metal materials using GHz pulse-echo technique
A method for evaluating the intrinsic mechanical quality factor Qm of thin films with the GHz pulse-echo technique is proposed. In this method, a film specimen is deposited directly on the backside of...
Giant barocaloric effects in composites of ethylene vinyl acetate copolymers and multilayer graphene with improved thermal conductivity
Elastic polymers with large and reversible barocaloric effects over wide temperature ranges are of potential application in solid-state refrigeration. However, the low thermal conductivity is harmful...
Graphene-mediated interfacial interactions at polar liquid–air interface in a microfluidic platform
Graphene, a monoatomic two-dimensional layer with high in-plane elasticity and strength, can function as an ultrathin suspended membrane on top of liquid surfaces in a microfluidic platform. Such plat...
Pulse train generation using a Fabry–Pérot cavity with an integrated optical amplifier and its application to parametric wavelength conversion
Improving the repetition rate of a pulsed laser is an important issue in measurement and processing, as it leads to increased average power. However, in general, the heat generated by high-power laser...
Effect of hydrostatic strain on the lattice thermal conductivity and thermoelectric properties of Bi2Te3
The effect of hydrostatic strain on the lattice thermal conductivity and thermoelectric properties of bulk Bi2Te3 at room temperature (300 K) is investigated by ab initio calculations. The temperature...
Micrometer-sized integrated plasmonic–electroacoustic hybrid transducer for biosensing applications
This paper presents the development of an on-chip, micrometer-sized, dual-mode transducing device for biosensing applications. The device integrates two distinct transducing mechanisms: plasmonic tran...
Large out-of-plane piezoelectricity of single-layer group III–V compounds decorated with hydrogen and fluorine
Using first-principles calculations, we systematically investigated the effects of hydrogenation and fluorination on the piezoelectric properties of single-layer honeycomb structures composed of group...
High quality-factor resonances in an asymmetric pixelated metasurface
We propose a pixel-based metasurface design with asymmetry parameters with a large number of pixels used to construct the unit cell. Each square-shaped pixel has only two states, either metal or diele...
Photon–plasmon hybrid emission and its emission tuning in metal–dielectric–metal planar microcavity
Surface plasmon coupled emission molds the flow of optical energy and, hence, it is feasible to alter the spatial distribution of emission and customize the optical ambience around fluorophores by int...
Ultralow lattice thermal conductivity and thermoelectric properties in anti-MoS2 nanostructured Tl2SSe
Discovering new two-dimensional (2D) materials and revealing the unique properties and potential applications are common pursuits within condensed matter physics and materials science. This study repo...
Plasmonic Janus particles: A perspective on optical manipulation and biomedical applications
The compositional asymmetry of Janus micro- and nanoparticles gives unprecedented opportunities to manipulate such particles with different stimuli to achieve enhanced optical, magnetic, and photother...
Probing the vibrational modes and Fano resonance of gold nanoparticles decorated MoS2 nanoflakes using Raman spectroscopy
Raman spectroscopy offers a fascinating way to explore how nanoparticles vibrate and interact. In this study, we are looking at how decorating MoS2 nanoflakes, a unique material known as a transition...
Interatomic doping regulating the electronic structure and magnetic anisotropy of MnI3 monolayer: A first-principles study
As a member of the two-dimensional transition metal trihalide (MX3) family, the MnI3 monolayer has recently garnered significant attention due to its unique intrinsic ferromagnetic half-metallic prope...
Observation of Klein bottle quadrupole topological insulators in electric circuits
The Klein bottle insulator phase plays a pivotal role in understanding higher-order topological phases. The insulator phase is characterized by a unique feature: A nonsymmorphic glide symmetry that ex...
Bloembergen Problem based magnonic physical reservoir computing
In this work, we propose a concept of physical reservoir computing based on the three-wave decay of magnetostatic surface spin waves (MSSW) in a thin yttrium iron garnet film and numerically model the...