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Hall Coefficient Sign Reversal Driven by Orbital-Selective Oxygen-Vacancy Scattering in Nickelate Films

Jian-Jian Miao、Yue Liu、Yue Zhao 等 6 位作者2026-08-19Chinese Physics Letters

Abstract Hall measurements in superconducting bilayer nickelate films show sign reversals that cannot be explained by rigid-band electron doping alone. We combine a DFT+CDMFT-derived correlated multi-orbital quasiparticle model with a T -matrix treatment of oxygen-vacancy scattering in a semiclassical Boltzmann transp…

Chemical and Physical Properties of MaterialsMagnetic properties of thin filmsPhysics of Superconductivity and Magnetism

Estimation of Hansen Solubility Parameters with an Entropy-Based Solubility-Parameter-Translated SRK Equation of State

Masaki Ota、Naishu Yang、Hiroyuki Komatsu 等 5 位作者2026-08-19Liquids

An entropy-based solubility parameter-translated Soave-Redlich-Kwong equation of state (eSPT-SRK EoS) was developed that incorporates two correction parameters which can be linearly correlated with the critical compressibility factor of pure substances. The correlated results gave an average relative deviation (ARD) v…

Phase Equilibria and ThermodynamicsCrystallization and Solubility StudiesAdsorption, diffusion, and thermodynamic properties of materials

Decoupling Thermodynamic and Kinetic Moisture Instability Reveals a Critical Humidity Threshold for Sodium Thiophosphate Solid Electrolyte

Boling Liu、J Liu、Ahmad Mandouh 等 11 位作者2026-08-19Advanced Energy Materials

ABSTRACT Sodium sulfide solid electrolytes are widely regarded as highly moisture‐sensitive, requiring ultralow‐humidity (typically 15–100 ppm) processing that imposes a major cost barrier to solid‐state battery manufacturing. Yet the actual moisture‐stability limit of these materials remains poorly quantified, and th…

Thermal Expansion and Ionic ConductivityAdvanced Battery Materials and TechnologiesAdvanced Battery Technologies Research

Mechanochemical Activation of a Bridged‐Exciplex Optical Force Probe

Ronja Schumann、Andreas Bock、Felix Majer 等 9 位作者2026-08-19Advanced Science

Strong demands are placed on optical force probes (OFPs) to detect bond scission on different timescales and in different microenvironments necessitating the development of detection strategies beyond simple on/off reporters. We here introduce OFPs based on bridged-exciplex Diels-Alder adducts. These exhibit fluoresce…

Luminescence and Fluorescent MaterialsMechanical and Optical ResonatorsForce Microscopy Techniques and Applications

Spacer-Stabilized Casimir Cavities: A Concept for Persistent Geometry-Locked Vacuum Regimes

Massimiliano Falleri2026-08-19Zenodo (CERN European Organization for Nuclear Research)

Spacer-Stabilized Casimir Cavities: A Concept for Persistent Geometry-Locked Vacuum Regimes — Version 12.0. This preprint presents a MEMS/NEMS-compatible conceptual architecture designed to maintain stable nanoscale Casimir-active gaps through combined mechanical, electrostatic, and geometrical stabilization. The prop…

Mechanical and Optical ResonatorsQuantum Electrodynamics and Casimir EffectNonlocal and gradient elasticity in micro/nano structures

Phonon interactions in metal halide perovskites elucidated by Raman scattering

Alejandro R. Goñi2026-08-19Applied Physics Reviews

There is a growing consensus that the exceptional optoelectronic properties of metal halide perovskites (MHPs) are largely due to the peculiar interplay between the inorganic cage lattice, composed of a labile network of corner-sharing metal halide octahedra, and the A-site cationic sublattice. This interaction signif…

Perovskite Materials and ApplicationsHeusler alloys: electronic and magnetic propertiesOptical properties and cooling technologies in crystalline materials

Robotic Nanoparticle Synthesis via Solution-based Processes

Dasharadhan Mahalingam、Michael Gallagher、Nilanjan Chakraborty 等 4 位作者2026-08-19ASME Letters in Translational Robotics

Abstract We present a screw geometry–based manipulation planning framework for the robotic automation of solution-based synthesis, exemplified through the preparation of gold and magnetite nanoparticles. The synthesis protocols are inherently long-horizon, multi-step tasks, requiring skills such as pick-and-place, pou…

Machine Learning in Materials ScienceMicro and Nano RoboticsModular Robots and Swarm Intelligence

Heat-Up Performance of Catalyst Carriers—A Study of Urban Drive Cycles

Thomas Steiner、Verena Schallhart、Luca Nohel 等 7 位作者2026-08-19Thermo

This study investigates the geometric parameters of commercially available or recently published models of catalyst substrates for passenger vehicles and provides a numerical evaluation of their influence on thermal behavior for use in urban areas. To ensure the plausibility of the results, a range of scenarios have b…

Catalytic Processes in Materials ScienceHeat and Mass Transfer in Porous MediaAerogels and thermal insulation

Training Data Determines Computational Phase: How Data Deduplication Produces a Distinct Dynamical Universality Class in Transformer Inference

Rod Robin Reyes Rodríguez2026-08-19Zenodo (CERN European Organization for Nuclear Research)

PARTIAL RETRACTION (v2, August 19, 2026). The central empirical claim of Version 1 of this paper — that training data composition determines the dynamical phase of geometric computation in transformer inference — is withdrawn, along with every result that depends on it. Version 2 is rewritten to the corrected record:…

Power Transformer Diagnostics and InsulationMagnetic Properties and ApplicationsScientific Research Methodologies and Applications

Chirality Breaking of Majorana Edge Modes Induced by Chemical Potential Shifts

Xin Yue、Guo-Jian Qiao2026-08-19Communications in Theoretical Physics

Abstract Quantum anomalous Hall insulator-superconductor heterostructures are predicted to host chiral Majorana fermions as edge modes, which is essential for topological quantum computing applications. Although the edge states have been extensively studied at zero chemical potential $\mu = 0$, the practically relevan…

Chemical and Physical Properties of MaterialsTopological Materials and PhenomenaAdvanced Condensed Matter Physics

Superresolution technique beyond the diffraction limit under a structured beam via different optical nanostructures

Subhankar Roy、Jianping Hu、M Ummal Momeen2026-08-19Scientific Reports

To overcome the limit of diffraction while achieving the superresolution technique, solid immersion lenses are the key optical elements for data storage and nanophotonics applications. Recent demonstrations have shown how different nanostructures (such as elliptical solid immersion lenses) are used in diverse fields o…

Near-Field Optical MicroscopyOptical Coatings and GratingsOrbital Angular Momentum in Optics

Catalyst-free, autoinductive photochemical upcycling of aromatic polymers and mixed plastics via autosensitization

Qin Qin、Yi-Xiang Wang、Jiarui Fei 等 5 位作者2026-08-19Science Advances

Photochemical upcycling of polymers is a promising strategy for mitigating the plastic-waste crisis; however, many recent advances have centered on developing costly photocatalysts. In contrast, the auto-sensitized photoreactivity of aromatic polymers such as polystyrene (PS)—albeit documented for decades—has remained…

biodegradable polymer synthesis and propertiesPolymer crystallization and propertiesMicroplastics and Plastic Pollution

Sample thickness dependence of structural and magnetic properties in α-RuCl3

Paige Harford、Ezekiel Horsley、Subin Kim 等 4 位作者2026-08-19Journal of Physics Materials

Abstract The layered transition metal trihalide α-RuCl3 has been studied extensively in recent years as a promising candidate for a proximate Kitaev quantum spin liquid state. In high quality samples, a complete structural transition from room-temperature C2/m to low-temperature R-3 is consistently observed, with a si…

Physics of Superconductivity and MagnetismAdvanced Condensed Matter PhysicsIron-based superconductors research

Observation of polaritonic flat-band bound states in the continuum in a 2D magnet

Fuhuan Shen、Jiahao Ren、Zhiyi Yuan 等 8 位作者2026-08-19Nature Communications

Abstract Flat-band bound states in the continuum (BICs) are topological states with suppressed group velocity and robustness against radiation loss, offering a powerful platform for the exploration of non-Hermitian, nonlinear, topological phenomena and device applications. Van der Waals (vdW) metasurfaces have recentl…

Metamaterials and Metasurfaces ApplicationsPlasmonic and Surface Plasmon ResearchStrong Light-Matter Interactions

Extend the waveband of high isolation ratio and narrow band asymmetric transmission based on grating-film-grating nanostructure

R. Ma、Yi Wang、Yuqing Cheng 等 4 位作者2026-08-19Applied Optics

A serial asymmetric transmission (AT) nanodevices based on the grating-film-grating (G-F-G) structure are proposed and studied. By showing the results of three different nanodevices as examples, it is proved that this kind of G-F-G nanostructure can achieve high isolation ratio AT at arbitrary wavelength within a cert…

Magneto-Optical Properties and ApplicationsPlasmonic and Surface Plasmon ResearchMetamaterials and Metasurfaces Applications

AI-driven robotics for optics

Shiekh Zia Uddin、Sachin Vaidya、Shrish Choudhary 等 8 位作者2026-08-19Science Advances

Optical experiments are essential across science and technology, yet their design, assembly, and alignment remain predominantly manual, limiting throughput, reproducibility, and scalability. Automating such experiments is challenging because of stringent precision requirements and the diversity of setups in typical re…

Neural Networks and Reservoir ComputingOrbital Angular Momentum in OpticsMachine Learning in Materials Science

Fully tunable strong spin orbit interactions in light hole germanium quantum channels

Patrick Del Vecchio、Stefano Bosco、Daniel Loss 等 4 位作者2026-08-19Communications Physics

Spin-orbit interaction is a fundamental component for electrically driven spin qubits and hybrid superconducting-semiconducting systems. In particular, Rashba spin-orbit interaction is a key mechanism enabling all-electrical spin manipulation schemes. However, in common planar systems, Rashba interaction is weak becau…

Quantum and electron transport phenomenaGraphene research and applicationsQuantum-Dot Cellular Automata

JANUS: A Multi-modal Foundation Neural Sampler for Disordered Materials

Denis Blessing、Mouyang Cheng、Maximilian Schebek 等 7 位作者2026-08-19arXiv (Cornell University)

Many problems in disordered materials require sampling beyond fixed composition and volume, where coupled changes in atomic identities and structure create a prohibitively expensive discrete-continuous sampling problem. Here we introduce JANUS, a multimodal neural sampler that couples continuous and masked discrete di…

Advanced Physical and Chemical Molecular InteractionsElectronic and Structural Properties of OxidesMachine Learning in Materials Science

Dielectric-Induced Charge Doping in Monolayer MoS2

Yan Wang、Leyi Loh、Han Yan 等 7 位作者2026-08-19Apollo

Unintentional doping from dielectrics can impact the electronic properties of two-dimensional transition metal dichalcogenide (2D TMD) semiconductors. Our recent work shows that highdielectric- constant (k) ZrO2 is an electrostatically inert dielectric for 2D MoS2, supported by Xray spectroscopy (XPS) and electrical m…

Graphene research and applicationsSemiconductor materials and devices2D Materials and Applications

LabDex: A Hierarchical Benchmark for Dexterous Manipulation in Laboratories

Zhipeng Tang、Sihang Chen、Sha Zhang 等 14 位作者2026-08-19arXiv (Cornell University)

Autonomous laboratories hold great promise for accelerating scientific discovery. To achieve this vision, robots are supposed to dexterously manipulate diverse labware and instruments and execute long-horizon, state-dependent experimental procedures. Yet existing benchmarks do not jointly capture dexterous hand use, r…

Micro and Nano RoboticsMachine Learning in Materials ScienceRobot Manipulation and Learning