Journal of Applied Physics

Vol. 139, Issue 5 Issue 5 2026
20
Articles

Articles in this Issue

Adaptive low loss multimodal metasurface based on dual phase-change materials of Sb2S3 and VO2

Aoxue Guo, Jiaxin Li, Yimin Zhang et al. Feb 07, 2026 10.1063/5.0302906

The powerful electromagnetic regulation capability of metasurfaces offers promising strategies for infrared camouflage technology. However, it is difficult to realize dynamic thermal emission control...

Precursor film dynamics during imbibition in capillaries with variable cross sections

Shengting Zhang, Jing Li, Rodrigo C. V. Coelho et al. Feb 07, 2026 10.1063/5.0302948

Understanding imbibition and the associated microscopic wetting dynamics is essential for advances in microfluidics, energy-related applications, and surface material design. In this work, we numerica...

Broadband approach for the most energy efficient way of radiation-driven heating

Viorel Badescu Feb 07, 2026 10.1063/5.0304660

The maximum efficiency of extracting work from thermal radiation energy has been intensely studied. However, a large part of the world's energy resources is actually used for heating rather than work...

Dual-polarization narrowband thermal vertical emitter with ultrahigh directionality

Meiya Rong, Kaixia Xu, Kezhang Shi et al. Feb 07, 2026 10.1063/5.0308301

Thermal radiation is inherently temporally and spatial incoherent. Precise control over thermal emission, especially achieving narrowband and highly directional radiation, is crucial for enhancing the...

An exact diagonalization approach to the electronic structure of quasi-one-dimensional systems

Wenzhuo Huang, Jun Zhong, Weidong Sheng et al. Feb 07, 2026 10.1063/5.0310421

An exact diagonalization approach is developed to solve the extended Hubbard model in momentum space, aiming to investigate the electronic and optical properties of quasi-one-dimensional systems. By t...

Establishing a library of metasurface building blocks through coherence-controlled holographic microscopy

Ondřej Červinka, Vlastimil Weiss, Martin Hrtoň et al. Feb 07, 2026 10.1063/5.0303155

Digital holographic microscopy is a powerful tool for characterizing transparent and reflective phase objects. Its ability to reconstruct amplitude and phase can also offer great insight into wavefron...

Stretchable metasurface design for non-diffracting beam manipulation

Zhenyan Guo, Ping Lu, Lixiu Zhang et al. Feb 07, 2026 10.1063/5.0292822

A stretchable non-diffraction lens based on the serpentine stretchable metasurface is proposed for non-diffraction beam manipulation. To achieve good mechanical property, the serpentine structure prin...

Mechanics and modeling of hierarchically porous metamaterials manufactured by foaming fused deposition modeling

Alexandra Sevcenco, Peter Walters, Clive R. Siviour et al. Feb 07, 2026 10.1063/5.0301777

Hierarchically porous materials show promise across many applications due to their high specific strength, energy absorption, and damage tolerance. They are limited, however, by manufacturing and scal...

Optimization and characterization of laser excitation for quantum sensing with single nitrogen-vacancy centers

Alejandro Martínez-Méndez, Jesús Moreno-Meseguer, Mariusz Mrózek et al. Feb 07, 2026 10.1063/5.0293773

In this work, we present a comprehensive method of characterization and optimization of laser irradiation within a confocal microscope tailored to quantum sensing experiments using nitrogen-vacancy (N...

Study on surface condensation behavior and flashover characteristics of superhydrophobic coating

Zhonghe Tong, Maoqiang Bi, Han Zeng et al. Feb 07, 2026 10.1063/5.0311272

Condensation is one of the critical factors leading to insulation degradation or even failure of electrical equipment in high-voltage switchgear, thereby posing a serious threat to the safe and stable...

Ultralight aerogels based on 2D van der Waals ferromagnets toward tunable and high-performance microwave absorption

Yanhui Ruan, Furun Chu, Bochong Wang et al. Feb 07, 2026 10.1063/5.0304047

The rapid advancement of communication technologies and the miniaturization of electronic devices have the demand for high-performance, lightweight microwave-absorbing materials. However, constructing...

Investigation of the transport behavior of BP and BAs using the Boltzmann transport equation and machine learning methods

Yongbo Shi, Yu Bao, Shuo Cao et al. Feb 07, 2026 10.1063/5.0314057

It is important to predict the theoretical upper limit of lattice thermal conductivity and carrier mobility in the face of high uncertainty in experimental measurements of boron phosphide (BP) and bor...

Interaction of atmospheric pressure helium plasma jets with hollow dielectric targets: Shallow and deep grooves

Natalia Yu. Babaeva, George V. Naidis Feb 07, 2026 10.1063/5.0307997

The results of a computational study of helium plasma jet interaction with hollow dielectric grooves of various sizes are presented. It is shown that the character of interaction of ionization waves f...

Ultra-high quality-factor enhancement via merged bound states in the continuum for high-performance optical sensing

Fugui Lei, Shun Wang, Leiming Wu et al. Feb 07, 2026 10.1063/5.0312833

Symmetry-protected bound states in the continuum (SP-BICs) offer a promising approach for high-quality (Q) metasurface design due to their non-radiative properties. However, conventional isolated SP-B...

Zero indirect bandgap in non-Hermitian systems

S. Rahul, Giandomenico Palumbo Feb 07, 2026 10.1063/5.0308387

Zero indirect gaps in band models are typically viewed as unstable and achievable only through fine-tuning. Recent works, however, have revealed robust semimetallic phases in Hermitian systems where t...

Generation of tunable broadband acoustic vortex via reconfigurable multilayered metasurface

Shuyu Zuo, Yixuan Wang, Liying Zhang et al. Feb 07, 2026 10.1063/5.0309545

Acoustic metasurface-based vortex generators have shown effective feasibility, yet they remain constrained by limited bandwidth or fixed functionality. Here, we propose a reconfigurable multilayered (...

Aperture-shared metalens for generating frequency- and polarization-multiplexed terahertz holograms

Jin Wang, Hongjia Yao, Shuo Tian et al. Feb 07, 2026 10.1063/5.0311407

In this paper, we propose a method to reconstruct frequency- and polarization-multiplexed terahertz (THz) holograms using an aperture-shared metalens composed of merely a single type of meta-atom stru...

Mott vs Kondo: Influence of various density functional based methods on the Ce isostructural phase transition mechanism

Brenden W. Hamilton, Alexander R. Muñoz, Travis E. Jones et al. Feb 07, 2026 10.1063/5.0309770

The cerium iso-structural phase transition (γ–α) is dominated by f-electron localization changes that results in a magnetic ordering change and a volume collapse. Generally, these physics are difficul...

Comparison of time-resolved photoluminescence and deep-level transient spectroscopy defect evaluations in an InAs <i>nBn</i> detector subjected to <i>in situ</i> and <i>ex situ</i> 63 MeV proton irradiation

Rigo A. Carrasco, Christopher P. Hains, Nathan Gajowski et al. Feb 07, 2026 10.1063/5.0315922

Deep-level transient spectroscopy and temperature-dependent time-resolved photoluminescence experiments are performed on identical InAs nBn photodetector structures as a function of in situ and ex sit...

Multiple scale-Galerkin's hybrid method for nonlinear frequency analysis of honeycomb cylindrical panels bonded to agglomerated CNT-reinforced patches

Yanting Sun Feb 07, 2026 10.1063/5.0294292

Honeycomb structures are a category of lightweight materials distinguished by a distinctive geometric configuration that resembles a honeycomb. On the other hand, carbon nanotube-reinforced composites...

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Journal Info

Publisher American Institute of Physics
ISSN 0021-8979
E-ISSN 1089-7550
Subject Physical Sciences
Language English
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