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arXiv preprints from January 1, 2026 through July 20, 2026 — 10:44:55 EST

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Posted in gr-qc · 2026-01-15 · Xue-Nan Chen

Distinguishing Quantum Matter by Gravity with Differential Scattering Cross Section at Tree Level

The definition of weak equivalence principle of quantum matter is an open problem at present. In order to reflect the probability of quantum system in the quantum version of weak equivalence principle, we proposed a quantum weak equivalence principle based on differential scattering cross section at tree level, that is, the...

💬 0 commentsarXiv:2601.10339v1PDF
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Posted in cond-mat.soft · 2026-01-15 · Rishabh V. More

Strain-transport superposition in shear-thinning dense non-Brownian suspensions

Shear thinning in dense non-Brownian suspensions is often attributed to shear-induced microstructural evolution, including changes in alignment, anisotropy, and near-contact statistics, yet how these changes influence particle-scale dynamics remains unclear. Using particle-resolved simulations of dense suspensions that shear thin...

💬 0 commentsarXiv:2601.18805v1PDF
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Posted in physics.med-ph · 2026-01-15 · Christiana Subaar, Ziem Samuel Aanoneda, Sylivia Boateng, Emmanuella Konadu Amaniampong, Philimon Adjei

Radiation Shielding Performance of Different Concrete Materials: A Systematic Review

Background: Concrete is one of the most-used material today in nuclear, medical, and industrial applications for radiation shielding due to its economic advantages and availability together with its structural performance. However, differences in the use of aggregates, density, and other additives affect radiation attenuation...

💬 0 commentsarXiv:2601.10336v2PDF
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Posted in cond-mat.dis-nn · 2026-01-15 · Florin Hemmann, Vincent Glauser, Ullrich Steiner, Matthias Saba

Computer Generation of Disordered Networks with Targeted Structural Properties

Disordered spatial networks describe structures and interactions across multiple length scales. The scattering and interference of waves within these networks result in structural phase transitions, localization, diffusion, and band gaps. Studying these phenomena requires efficient numerical methods for generating disordered networks...

💬 0 commentsarXiv:2601.10333v2PDF
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Posted in physics.chem-ph · 2026-01-15 · Jingkang Liang, Niklas Groll, Gürkan Sin

Large Language Model Agent for User-friendly Chemical Process Simulations

Modern process simulators enable detailed process design, simulation, and optimization; however, constructing and interpreting simulations is time-consuming and requires expert knowledge. This limits early exploration by inexperienced users. To address this, a large language model (LLM) agent is integrated with AVEVA Process...

💬 0 commentsarXiv:2601.11650v2PDF
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Posted in physics.optics · 2026-01-15 · Suzuyo Komeda, Nobuhisa Tateno, Yusong Liu, Rion Morishita, Xibo Wang, Ibrahim Abd El-Sadek, Atsuko Furukawa, Satoshi Matsusaka, Shuichi Makita, Yoshiaki Yasuno

Neural-network-based high-speed and high-definition full-field dynamic optical coherence tomography

A neural-network (NN)-based method for high-speed, high-definition dynamic optical coherence tomography (DOCT) using full-field swept-source optical coherence microscopy (FF-SS-OCM) is demonstrated. FF-SS-OCM provides high-definition OCT images, but, particularly in DOCT imaging, it results in a significant enlargement of the data...

💬 0 commentsarXiv:2601.10327v1PDF
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Posted in quant-ph · 2026-01-15 · Yifang Xu, Yilong Zhou, Ziyue Hua, Lida Sun, Jie Zhou, Weiting Wang, Weizhou Cai, Hongwei Huang, Lintao Xiao, Guangming Xue, Haifeng Yu, Ming Li, Chang-Ling Zou, Luyan Sun

Principles of Optics in the Fock Space: Scalable Manipulation of Giant Quantum States

The manipulation of distinct degrees of freedom of photons plays a critical role in both classical and quantum information processing. While the principles of wave optics provide elegant and scalable control over classical light in spatial and temporal domains, engineering quantum states in Fock space has been largely restricted to...

💬 0 commentsarXiv:2601.10325v1PDF
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Posted in physics.chem-ph · 2026-01-15 · Kadri Muuga, Lisanne Knijff, Chao Zhang

Molecular electrostatic potentials from machine learning models for dipole and quadrupole predictions

The molecular electrostatic potential (MEP) is a key quantity for describing and predicting intermolecular and ion-molecule interactions. Here, we assess the ability of machine-learning (ML) models to infer the MEP, based on the equivariant graph-convolutional neural network architecture PiNet2 and trained on dipole and quadrupole...

💬 0 commentsarXiv:2601.10320v1PDF
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Posted in physics.class-ph · 2026-01-15 · Mario J. Pinheiro

Nonlinear Scalar Interactions in the EMDrive: Petiau's Elliptic-Function Approach

The EMDrive, a controversial electromagnetic propulsion concept, challenges momentum conservation in standard Maxwell electrodynamics. We propose a beyond-Maxwell framework by coupling the electromagnetic field to a light scalar field, inspired by axion-like particle models and effective field theory. Using Guy Petiau's 1958...

💬 0 commentsarXiv:2601.10769v1PDF
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Posted in quant-ph · 2026-01-15 · Gavriil Voloshin, Konstantin Barantsev, Andrey Litvinov

Addition to the dynamic Stark shift of the coherent population trapping resonance

This paper presents a theoretical study of the light-induced shift of the coherent population trapping resonance. An analytical model is proposed that describes the interaction of two radiation components with an atomic system using a $Λ$ scheme and takes into account an additional level of excited state. Both weak and strong coupling...

💬 0 commentsarXiv:2601.10319v1PDF
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Posted in astro-ph.HE · 2026-01-15 · Wenkang Lian, He Gao, Shunke Ai, B. Theodore Zhang

Multimessenger Prospects for Low-Luminosity Gamma-Ray Bursts: Joint Neutrino and X-Ray Observations

Low--luminosity gamma-ray bursts (LLGRBs) are promising candidates for high-energy neutrinos, yet no coincident neutrino events have been detected so far. Recent advances in X-ray time-domain astronomy, together with the development of next-generation neutrino telescopes, open new opportunities for joint X-ray and neutrino...

💬 0 commentsarXiv:2601.10317v1PDF
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Posted in hep-ph · 2026-01-15 · Gurucharan Mohanta, Ketan M. Patel

Flavour hierarchies from radiative corrections in latticed theory space

It has recently been shown that when $N_f$ generations of chiral fermions are coupled in a specific manner to $N$ (with $N \geq 2N_f-1$) pairs of vectorlike fermions whose mass terms form a one-dimensional lattice-like structure in theory space, locality along the lattice ensures that only a single fermion generation acquires a mass...

💬 0 commentsarXiv:2601.10316v1PDF
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Posted in astro-ph.CO · 2026-01-15 · Eske M. Pedersen, Leonel Medina-Varela, Emily Phillips Longley, Mustapha Ishak, Joe Zuntz, Chihway Chang, C. Danielle Leonard

Extracting intrinsic alignments in the Dark Energy Survey's year 1 data, using the self-calibration method and LSST-DESC tools

We present the implementation of a Self-Calibration of Intrinsic Alignments of galaxies as an extension to the Vera C. Rubin Observatory's Legacy Survey of Space and Time (LSST) Dark Energy Science Collaboration (DESC)'s weak lensing 3x2pt pipeline (TXPipe). As a demonstration, we have run this pipeline on the Dark Energy Survey (DES)...

💬 0 commentsarXiv:2601.10314v1PDF
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Posted in hep-ph · 2026-01-15 · Wei Liu, Supriya Senapati, Jin Sun

Revealing Neutrino Mass Ordering at CEPC and FCC-ee

The neutrino masses ordering remains one of the most important open questions in neutrino physics. While upcoming oscillation experiments aim to resolve this problem at low energies, complementary approaches are highly desirable. In this Letter, we show that the neutrino mass ordering can be probed at high-energy colliders through the...

💬 0 commentsarXiv:2601.10311v2PDF
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Posted in math-ph · 2026-01-15 · Vladimir Gol'dshtein, Reuven Segev

On Force Interactions for Electrodynamics-Like Theories

A framework for premetric p-form electrodynamics is proposed. Independently of particular constitutive relations, the corresponding Maxwell equations are derived as a special case of stress theory in geometric continuum mechanics. Expressions for the potential energy of a charged region in spacetime, as well as expressions for the...

💬 0 commentsarXiv:2601.10308v1PDF
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Posted in astro-ph.CO · 2026-01-15 · Atrideb Chatterjee

Effect of Primordial Black Holes on the global 21-cm signal

The 21-cm global signal, a treasure trove of information about the nature of the first luminous sources of the Universe, has traditionally been modelled assuming that these early sources were predominantly star-forming galaxies. However, recent observations by the James Webb Space Telescope (JWST) have revealed several AGNs as early...

💬 0 commentsarXiv:2601.10304v2PDF
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Posted in gr-qc · 2026-01-15 · Faizuddin Ahmed, Ahmad Al-Badawi, İzzet Sakallı

Effects of spontaneous Lorentz Symmetry breaking on Letelier-AdS charged black holes within Kalb-Ramond gravity

In this study, we investigate the geodesic motion of massless particles -- specifically photons -- in the spacetime of a charged anti-de Sitter (AdS) black hole (BH) surrounded by a cloud of strings (CoS) within the framework of Kalb-Ramond (KR) gravity. We analyze the effective potential that governs photon trajectories, explore the...

💬 0 commentsarXiv:2601.10303v2PDF
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Posted in quant-ph · 2026-01-15 · Yu. M. Poluektov

Complex scalar relativistic field as a probability amplitude

A relativistic equation for a neutral complex field as a probability amplitude is proposed. The continuity equation for the probability density is obtained. It is shown that there are two types of excitations of this field, which describe particles with positive energy and different dispersion laws. Based on the Lagrangian formalism,...

💬 0 commentsarXiv:2601.10302v2PDF
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Posted in cond-mat.quant-gas · 2026-01-15 · Marta Domínguez-Navarro, Abel Rojo-Francàs, Bruno Juliá-Díaz, Grigori E. Astrakharchik

Quantum Monte Carlo study of systems interacting via long-range interactions mediated by a cavity

We study one-dimensional quantum gases in continuous space with cavity-mediated infinite-range interactions using variational and diffusion Monte Carlo methods. Starting from the exact two-body solution, we construct a non-translationally invariant Jastrow wavefunction that accurately captures the spatial structure induced by the...

💬 0 commentsarXiv:2601.10301v1PDF
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Posted in physics.acc-ph · 2026-01-15 · Upendra Prasad, Mahesh Ghate, Piyush Raj, Deven Kanabar, Pankaj Varmora, Swati Roy, Arun Panchal, Dhaval Bhavsar, Anees Bano, Nitish Kumar, Bhadresh Parghi, Akhilesh Yadav, Mohd. Umer, Vijay Vasava, Raton Mandal, Rajkumar Ahirwar, Megha Thaker

Design, Fabrication and Testing of a D-Shaped High Temperature Superconducting Magnet

High-temperature technical superconductors are potential candidates for compact and high-field tokamak magnets. The demand for higher fusion power can be met with an on-axis high magnetic field due to toroidal magnets. An R&D activity has been initiated at the Institute for Plasma Research, India, to develop a compact D-shaped...

💬 0 commentsarXiv:2601.10295v1PDF
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Posted in physics.plasm-ph · 2026-01-15 · Marco Barbisan, Bruno Laterza, Luca Cinnirella, Lionello Marrelli, Federico Molon, Simone Peruzzo, Enrico Zampiva

Updated electrical design of the Diagnostic Neutral Beam Injector in RFX-mod2

The Diagnostic Neutral Beam Injector (DNBI) of the RFX-mod2 experiment (Consorzio RFX, Padova) is expected to provide novel and significant information about the Reversed Field Pinch confinement of fusion plasmas. The present DNBI, built by the Budker Institute of Plasma Physics, features an arc discharge H+ source, coupled to a...

💬 0 commentsarXiv:2601.10293v2PDF
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Posted in cond-mat.supr-con · 2026-01-15 · Ekta Bhatia, Tharanga R. Nanayakkara, Chenyu Zhou, Tuan Vo, Wenli Collison, Jakub Nalaskowski, Stephen Olson, Soumen Kar, Hunter Frost, John Mucci, Brian Martinick, Ilyssa Wells, Thomas Murray, Corbet Johnson, Charles T Black, Mingzhao Liu, Satyavolu S Papa Rao

Effects of Integrated Heatsinking on Superconductivity in Tantalum Nitride Nanowires at the 300 Millimeter Scale

We report the superconducting properties of tantalum nitride (TaN) nanowires and TaN/copper (TaN/Cu) bilayer nanowires fabricated on 300 mm silicon wafers using CMOS-compatible processes. We evaluate how an integrated Cu heatsink modifies the superconducting response of TaN nanowires by improving thermal dissipation without...

💬 0 commentsarXiv:2601.10480v1PDF
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Posted in quant-ph · 2026-01-15 · Eyad I. B Hamid

H-EFT-VA: An Effective-Field-Theory Variational Ansatz with Provable Barren Plateau Avoidance

Variational Quantum Algorithms (VQAs) are critically threatened by the Barren Plateau (BP) phenomenon. In this work, we introduce the H-EFT Variational Ansatz (H-EFT-VA), an architecture inspired by Effective Field Theory (EFT). By enforcing a hierarchical "UV-cutoff" on initialization, we theoretically restrict the circuit's state...

💬 0 commentsarXiv:2601.10479v2PDF
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Posted in cond-mat.mes-hall · 2026-01-15 · V. M. Mostepanenko, G. L. Klimchitskaya

Quantum Theory and Unusual Dielectric Functions of Graphene

We address the spatially nonlocal dielectric functions of graphene at any frequency derived starting fromthe first principles of thermal quantum field theory using the formalism of the polarization tensor. After a brief review of this formalism, the longitudinal and transverse dielectric functions are considered at any relationship...

💬 0 commentsarXiv:2601.10478v2PDF
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Posted in quant-ph · 2026-01-15 · Daniel Koch, Brian Pardo, Kip Nieman

Analysis and Experimental Demonstration of Amplitude Amplification for Combinatorial Optimization

Quantum Amplitude Amplification (QAA), the generalization of Grover's algorithm, is capable of yielding optimal solutions to combinatorial optimization problems with high probabilities. In this work we extend the conventional 2-dimensional representation of Grover's (orthogonal collective states) to oracles which encode cost functions...

💬 0 commentsarXiv:2601.10473v1PDF