Recent Articles

Electron-phonon coupling in magnetic materials using the local spin density approximation

Álvaro Adrián Carrasco Álvarez, Matteo Giantomassi, Jae-Mo Lihm, Guillaume E. Allemand, Maxime Mignolet, Matthieu Verstraete, and Samuel Poncé

Phys. Rev. B 114, 074411 (2026) - Published 10 August, 2026

Strain-induced magnetization in RuO2

Chuhan Tang, Fuxiang Li, and Liming Tang

Phys. Rev. B 114, 074412 (2026) - Published 10 August, 2026

Field angle-dependent magnetization reversal in perpendicular anisotropy garnet films

Senyin Zhu, Hanxu Zhang, Zhichao Xing, Bingchi Li, Zhicong Zhang, Xingyu Huang, Yang Li, Qiang Fu, Xianjie Wang, Andreas Berger, and Bo Song

Phys. Rev. B 114, 074413 (2026) - Published 10 August, 2026

Dzyaloshinskii-Moriya–driven instabilities in square-kagome quantum antiferromagnets

Leonid S. Taran, Arnaud Ralko, Fedor V. Temnikov, Vladimir V. Mazurenko, Sergey V. Streltsov, and Yasir Iqbal

Phys. Rev. B 114, 074414 (2026) - Published 10 August, 2026

Phase field modeling of microstructure evolution and magnetic phase transitions in (Hf1xNbx)Fe2 alloys

Ye Tao, Jian-Tao Wang, Fengxia Hu, and Changfeng Chen

Phys. Rev. B 114, 074415 (2026) - Published 10 August, 2026

Structure and superconductivity in a ternary selenide PbSnSe2 alloy of three-dimensional PbSe and two-dimensional SnSe under pressure

Binbin Yue, Wei Zhong, Huchen Shu, Kaiwen Li, Yi Tan, Jingwei Miao, E. Karaca, D. Errandonea, and Fang Hong

Phys. Rev. B 114, 074502 (2026) - Published 10 August, 2026

Fractality and percolation in the phase transition of polycrystalline graphite

Vilmos Neuman, Zuzanna Malinowska-Trzmielak, and Mark Wilson

Phys. Rev. B 114, 084103 (2026) - Published 10 August, 2026

Phonon dynamics in chromium under pressure: Absence of phonon criticality at the approach of the quantum critical point

P. Rodière, J. E. Lorenzo, Q. N. Meier, L. Paolasini, and A. Bosak

Phys. Rev. B 114, 084304 (2026) - Published 10 August, 2026

Competing magnetic and topological orders in the spin-1 Kitaev-Heisenberg chain with single-ion anisotropy

Sahinur Reja and Satoshi Nishimoto

Phys. Rev. B 114, 084406 (2026) - Published 10 August, 2026

Antisite-disorder driven tuning of magnetic properties and exchange bias in Nd2xSrxCoMnO6δ (0x1) (δ0.5) double perovskites

Kazi Parvez Islam, Jayjit Kumar Dey, Sourav Chowdhury, Samyabrata Paria, Flora Banerjee, Suryakanta Mishra, Suman Kalyan Samanta, Moritz Hoesch, Robert Dankelman, Indu Dhiman, and Debraj Choudhury

Phys. Rev. B 114, 084407 (2026) - Published 10 August, 2026

Observation of body-centered cubic iron above 200 gigapascals

Zuzana Konôpková et al.

Phys. Rev. B 114, 094103 (2026) - Published 10 August, 2026

Under Earth’s core-like pressures, iron’s expected hexagonal structure energetically competes with other cubic forms. This study probes the state of iron near its melting temperature using series of femtoseconds x-rays pulses of the European XFEL. Between 120–160 GPa, a stable hexagonal phase is confirmed, with brief transient disordered or cubic phases appearing. Above 200 GPa, a new diffraction peak emerges, characteristic of a body-centered cubic (bcc) structure. Following this uncommon kinetic and pressure-temperature path, the bcc structure is shown to be stable, providing exciting insights into the kinetics, stability, and transformation mechanisms of iron under these conditions.

Pressure-driven phase structure dynamics of a van der Waals α/βIn2Se3 heterojunction

Zheting Zhang (张哲艇), Yuting Yan (严雨婷), Liyuan Chen (陈丽媛), Kai Jiang (姜凯), Liyan Shang (商丽燕), Liangqing Zhu (朱亮清), Yawei Li (李亚巍), and Zhigao Hu (胡志高)

Phys. Rev. B 114, 094104 (2026) - Published 10 August, 2026

Interplay between charge correlations and superconductivity across the superconducting domes of CsV3Sb(5x)Snx

Andrea N. Capa Salinas, Steven J. Gomez Alvarado, Brenden R. Ortiz, Sarah Schwarz, Ganesh Pokharel, Luca Buiarelli, Hyeonseo Harry Park, Shiyu Yuan, Roland Yin, Suchismita Sarker, Turan Birol, and Stephen D. Wilson

Phys. Rev. B 114, 094504 (2026) - Published 10 August, 2026

Normalized Andreev conductance peak in metal-superconductor point contacts can be enhanced above its ballistic maximum by disorder in the superconductor

Martin Moško, Maroš Gregor, Richard Hlubina, Antónia Mošková, Tomáš Roch, Serhii Volkov, and Tomáš Plecenik

Phys. Rev. B 114, 094505 (2026) - Published 10 August, 2026

Symmetric entanglers for noninvertible symmetry-protected topological phases

Minyoung You

Phys. Rev. B 114, 105109 (2026) - Published 10 August, 2026

Role of interstitial s orbital in a model of infinite-layer nickelates

Yan Peng, Rui Peng, and Mi Jiang

Phys. Rev. B 114, 105110 (2026) - Published 10 August, 2026

Unified ab initio quantum-electrodynamical density functional theory for cavity-modified electron-phonon-photon coupling in solids

Benshu Fan, I-Te Lu, Michael Ruggenthaler, and Angel Rubio

Phys. Rev. B 114, 105111 (2026) - Published 10 August, 2026

Optical cavities can reshape materials through quantum vacuum fluctuations, even without external illumination. Here, the authors develop a unified first-principles framework that treats electrons, atomic vibrations, polarization, and optical response on equal footing. Applied to gallium nitride, the approach predicts cavity-induced changes in electronic structure, lattice vibrations, dielectric response, and light absorption, together with measurable terahertz transmission shifts. The framework opens a route to engineering solid-state properties using the quantum vacuum.

Transition radiation in helical metamaterials with strong spatial dispersion

P. O. Kazinski and P. S. Korolev

Phys. Rev. B 114, 105405 (2026) - Published 10 August, 2026

Refraction-induced transverse charge transport

Ronika Sarkar, Arka Bandyopadhyay, Awadhesh Narayan, and Diptiman Sen

Phys. Rev. B 114, 105406 (2026) - Published 10 August, 2026

The authors introduce here a new mechanism that produces a Hall-like transverse response in time-reversal-invariant materials, driven entirely by geometric effects. A tilted potential interface causes electron wave packets to undergo a refractionlike deflection upon transmission, generating a finite transverse current and Hall-like conductance without magnetic fields or broken time-reversal symmetry. The analytical framework and numerical simulations across multiple lattice models and device geometries establish the conductance signatures, while real-time wave-packet dynamics confirms the geometric origin and robustness of this effect.

One-dimensional electronic states in a moiré superlattice of twisted bilayer WTe2

Takuto Kawakami, Hayato Tateishi, Daiki Yoshida, Xiaohan Yang, Naoto Nakatsuji, Limi Chen, Kohei Aso, Yukiko Yamada-Takamura, Yoshifumi Oshima, Yijin Zhang, Tomoki Machida, Koichiro Kato, and Mikito Koshino

Phys. Rev. B 114, 105407 (2026) - Published 10 August, 2026

Most moiré superlattices studied to date are two-dimensional, but a recently discovered one-dimensional counterpart raises the question of whether it can host genuinely one-dimensional electronic states. Here, the authors show that lattice relaxation in twisted bilayer WTe2 generates nearly one-dimensional electronic bands and reveal the microscopic origin of this behavior. They also develop a general theoretical framework for understanding and predicting one-dimensional moiré superlattices in a broad class of anisotropic layered materials.

Sign In to Your Journals Account

Filter

Recent Issues

Vol. 114, Iss. 18
15 September 2026
Vol. 114, Iss. 17
15 September 2026
Vol. 114, Iss. 16
15 September 2026
Vol. 114, Iss. 15
1 September 2026
Category
Article Type
Section

Filter

Article Lookup

Enter a citation