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Physics

arXiv preprints from January 1, 2026 through September 23, 2026 — 18:15:21 EST

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Posted in math-ph · 2026-01-10 · Andrey Badanin, Evgeny Korotyaev

Inverse problem for the divisor of the good Boussinesq equation

A third-order operator with periodic coefficients is an L-operator in the Lax pair for the Boussinesq equation on a circle. The projection of the divisor of the Floquet solution poles for this operator coincides with the spectrum of the three-point Dirichlet problem. The sign of the norming constant of the three-point problem...

💬 0 commentsarXiv:2601.06683v1PDF
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Posted in cond-mat.supr-con · 2026-01-10 · J. W. Dunstan, R. Shaikhaidarov, K. H. Kim, A. Shesterikov, I. Antonov, S. Linzen, E. V. Il'ichev, V. N. Antonov, O. V. Astafiev

Aharonov-Casher Effect and the Coherent Flux Tunneling in the Hybrid Charge Quantum Interference Device

By exploiting the Aharonov-Casher effect we demonstrate a suppression of magnetic flux tunneling in a Hybrid Charge Quantum Interference Device. The main part of this device is two Josephson junctions with a small superconducting island between them. To minimize phase fluctuations across Josephson junctions, this structure is embedded...

💬 0 commentsarXiv:2601.06682v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-10 · Yufan Zhang, Michael Zaiser

A phase field model of the effects of dislocation microstructure on grain boundary motion during recrystallization

The internal energy associated with the defect microstructure of strongly deformed crystals provides an important driving force for grain boundary motion during recrystallization. Typical dislocation microstructures are strongly heterogeneous and this heterogeneity affects the motion of recrystallization boundaries. In this study, a...

💬 0 commentsarXiv:2601.06669v1PDF
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Posted in cond-mat.supr-con · 2026-01-10 · Vishal Ganesan, Jiankun Zhang, Drew G. Wild, Alexey Bezryadin

Comparison of Two-Level System Microwave Losses in Pure Bulk Microcrystalline Nb2O5 and NbO2 Oxide Samples

Losses from two-level systems (TLS) associated with amorphous oxides remain one of the primary limitations to the performance of superconducting qubits and microwave cavities. Niobium resonators are widely used in quantum science experiments, yet niobium's natural oxide layer contains various types of oxides whose relative...

💬 0 commentsarXiv:2601.06668v4PDF
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Posted in quant-ph · 2026-01-10 · Sinchan Snigdha Rej, Snigdhadev Ray, Bimalendu Deb

Rydberg atom parity gate based on dark state resonances

Quantum computation (QC) and digital quantum simulation (DQS) essentially require two- or multi-qubit controlled-NOT or -phase gates. We propose an alternative pathway for QC and DQS using a three-qubit parity gate in a Rydberg atom array. The basic principle of the Rydberg atom parity gate (RPG) is that the operation on the target...

💬 0 commentsarXiv:2601.06665v1PDF
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Posted in gr-qc · 2026-01-10 · Alikram N. Aliev, Göksel Daylan Esmer

Kerr-Newman-de Sitter black holes in $f(R)$ gravity with constant curvature: horizon structure and extremality

The theory of $f(R)$ gravity with constant curvature (i.e. constant scalar curvature) admits rotating and charged black hole solutions obtained from the Kerr-Newman-(A)dS metrics of general relativity through appropriate rescalings of the metric parameters. In this paper, we focus on the Kerr-Newman-de Sitter case and present a...

💬 0 commentsarXiv:2601.06661v2PDF
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Posted in cond-mat.mtrl-sci · 2026-01-10 · Maxwell Rae, Merrill Chiang, Mahmudul Islam, Angus P. C. Wylie, Avery Nguyen, Myles Stapelberg, Saleem A. Al Dajani, Kristýna Repček, Tomáš Grabec, Abby Kaplan, Rodrigo Freitas, Michael P. Short

Detecting the Onset and Progression of Spinodal Decomposition using Transient Grating Spectroscopy

Spinodal decomposition can degrade corrosion resistance and embrittle materials. The ability to quickly, conclusively, and non-destructively detect the onset of spinodal decomposition before catastrophic materials degradation would represent a significant advance in materials testing. We demonstrate that spinodal decomposition can be...

💬 0 commentsarXiv:2601.06659v1PDF
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Posted in physics.optics · 2026-01-10 · Xujing Liu, Yinhui Kan, Shailesh Kumar, Liudmilla F. Kulikova, Valery A. Davydov, Viatcheslav N. Agafonov, Sergey I. Bozhevolnyi

Chip-integrated metasurface-enabled single-photon skyrmion sources

Skyrmions, topologically stable field configurations, have recently emerged in classical optics as structured light for high-density data applications. Achieving controllable on-chip generation of single-photon skyrmions, while being highly desirable for quantum information technologies, remains challenging due to the nanoscale...

💬 0 commentsarXiv:2601.06657v1PDF
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Posted in astro-ph.CO · 2026-01-10 · Hao Wang, Yun-Song Piao

Impact of a negative cosmological constant on the reconstruction of dark energy in light of DESI BAO data

An anti-de Sitter vacuum, corresponding to a negative cosmological constant (NCC), might coexist with one evolving positive dark energy component at low redshift and is hinted by the latest DESI observations. In this paper, we use two methods, \textit{redshift-binned} and \textit{Gaussian Process-based} reconstructions to investigate...

💬 0 commentsarXiv:2601.06656v1PDF
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Posted in physics.flu-dyn · 2026-01-10 · Otome Obukohwo, Andrew Sowinski, Poupak Mehrani, Holger Grosshans

The effect of discontinuous injection on particle back-flow in pneumatic conveying systems

Pneumatic conveying is used in many process industries to transport dry, granular, and powdered solids. The triboelectrification of particles during conveying causes particle agglomeration, spark discharges, and disruptions in particle flow, making particles move upstream against the fluid flow. The effect of frequency of particle...

💬 0 commentsarXiv:2601.06653v1PDF
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Posted in physics.flu-dyn · 2026-01-10 · Otome Obukohwo, Andrew Sowinski, Poupak Mehrani, Holger Grosshans

CFD study of particle back-flow in pneumatic conveying systems due to triboelectrification

In industrial plants, pneumatic conveying systems are often used to convey particles from one location to another. Surprisingly, in bench-scale experiments, clusters of particles sometimes flow backward or upstream in the conveying channel. In this paper, the effect of electrostatic charge and forces on particle back-flow was...

💬 0 commentsarXiv:2601.06651v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-10 · Sophie F. Weber, Veronika Sunko

Deterministic domain selection of antiferromagnets via magnetic fields

Antiferromagnets (AFMs) hold promise for applications in digital logic. However, switching AFM domains is challenging, as magnetic fields do not couple to the bulk antiferromagnetic order parameter. Here we show that magnetic-field-driven switching of AFM domains can in many cases be enabled by a generic reduction of magnetic exchange...

💬 0 commentsarXiv:2601.06646v1PDF
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Posted in physics.gen-ph · 2026-01-10 · F. De Zela

Possible Vulnerability of Bell-Clauser-Horne-Shimony-Holt Tests used for Quantum Certification

A hidden variables (HVs) model is reported, which reproduces quantum predictions for Bell-Clauser-Horne-Shimony-Holt (Bell-CHSH) tests. The existence of such a model poses some limitations to quantum certifications that rely on Bell-CHSH inequality violations. The reported model does not prove wrong Bell's theorem. The latter assumes...

💬 0 commentsarXiv:2601.07867v2PDF
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Posted in cond-mat.stat-mech · 2026-01-10 · Juan J. Segura

A Conservative Log-Size Master Equation for Fragmentation PBEs: Jump Transport, Drift--Diffusion Asymptotics, and PSD Inference

Fragmentation population-balance equations (PBEs) describe how particle size distributions (PSDs) evolve under breakage and daughter fragment redistribution. From a standard self-similar fragmentation class we derive an \emph{exact conservative transport equation in log-size} for the \emph{normalized mass fraction}: a state-dependent...

💬 0 commentsarXiv:2601.06638v2PDF
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Posted in math-ph · 2026-01-10 · Juan J. Segura

Comminution as a Non-Hermitian Quantum Field Theory: Log-Size Jump Generators, Branching Embeddings, and the Airy Solvable Sector

Pure-breakage population balance equations (PBEs) give the standard deterministic description of fragmentation and comminution. They predict mean particle size distributions, but they do not determine fluctuations, size-size correlations, or universality under coarse-graining. We develop a field-theoretic framework anchored in the PBE...

💬 0 commentsarXiv:2601.06635v1PDF
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Posted in astro-ph.GA · 2026-01-09 · Jordan Hoffmann, Clancy James, Jason Xavier Prochaska, Marcin Glowacki

I can see your halo: Constraining the Milky Way halo DM with FRB population studies

Fast radio bursts (FRBs) probe the electron column density along the line of sight and hence can be used to probe foreground structures. One such structure is the Galactic halo. In this work, we use a total of 98 high Galactic latitude ($|b| > 20^\circ$) FRBs detected by ASKAP, Parkes, DSA and FAST with 32 associated redshifts to...

💬 0 commentsarXiv:2601.05496v1PDF
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Posted in physics.plasm-ph · 2026-01-09 · Hanyang Li, Yulia Sharova, Denis Eremin, Yangyang Fu

Similarity Theory and Scaling Networks for Electromagnetic Wave-Driven Plasmas

We demonstrate the scale-invariant behavior of electromagnetic wave-driven radio-frequency plasmas across different dimensional scales. Using two-dimensional electromagnetic particle-in-cell simulations, we show that plasma uniformity remains the same in similar discharges. Building on the concept of similarity laws, we develop...

💬 0 commentsarXiv:2601.05492v1PDF
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Posted in physics.geo-ph · 2026-01-09 · Guoyi Chen, Junlun Li, Bao Deng

Accurate Interpolation of Ambient Noise Empirical Green's Functions by Denoising Diffusion Probabilistic Model and Implicit Neural Representation

Empirical Green's functions (EGFs) extracted from seismic ambient noise have been widely used to image Earth's interior structures, and the resolution of EGF-based tomography depends on the spatial density of seismic stations. However, due to cost and logistical constraints, it is often difficult to deploy dense seismic networks...

💬 0 commentsarXiv:2601.05489v1PDF
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Posted in astro-ph.IM · 2026-01-09 · Kai Xiao, Yang Huang, Haibo Yuan, Bowen Huang, Dongwei Fan, Timothy C. Beers, Zhirui Li, Henggeng Han, Qiqian Zhang, Tao Wang, Mingyang Ma, Yuanchang Wang, Shuai Xu, Lin Yang, Jifeng Liu

A Large and Precise All-Sky Photometric Standard Star Dataset Across More Than 200 Passbands

High-precision photometric standard stars play a key role in enabling accurate photometric calibration and advancing various fields of astronomy. However, due to limitations in calibration methods and the limited availability and underuse of high-precision reference data, existing photometric standard stars may suffer from...

💬 0 commentsarXiv:2601.05486v1PDF
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Posted in cond-mat.str-el · 2026-01-09 · Yisheng Chai

Revival of Strain Susceptibilities: Magnetostrictive Coefficient and Thermal-Expansion Coefficient

In thermodynamics, volume is an essential extensive variable. Strain-line, area, or volume change-therefore offers a direct window into correlated quantum matter: tiny length changes ΔL track how the lattice responds when state variables such as magnetic field H and/or temperature T are varied, revealing phases, transitions, and...

💬 0 commentsarXiv:2601.05484v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-09 · Manyu Wang, Chang Li, Bingxian Shi, Shuo Mi, Xiaoxiao Pei, Shuming Meng, Yanyan Geng, Fei Pang, Rui Xu, Li Huang, Wei Ji, Hong-Jun Gao, Peng Cheng, Le Lei, Zhihai Cheng

Intertwined atomic-nanoscale-microscale structures via intralayer anisotropic Fe-chains in the layered ferromagnet FePd2Te2

Controlling mesoscale and nanoscale material structures and properties through self-organized atomic behavior is essential for atomic-scale manufacturing. However, direct and visual studies on the cross-scale effects of such atomic self-organization on mesoscopic structures remain scarce. Here, we report the intertwined...

💬 0 commentsarXiv:2601.05481v1PDF
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Posted in astro-ph.EP · 2026-01-09 · Yoshiaki Endo, Yasuto Watanabe, Kazumi Ozaki

Stellar control on atmospheric carbon chemistry, CO runaway, and organic synthesis on lifeless Earth-like planets

The abundances of atmospheric carbon species--carbon dioxide (CO2), carbon monoxide (CO), and methane (CH4)--exert fundamental controls on the climate, redox state, and prebiotic environment of terrestrial planets. As exoplanet atmospheric characterization advances, it is essential to understand how these species are regulated on...

💬 0 commentsarXiv:2601.05480v1PDF
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Posted in quant-ph · 2026-01-09 · Zhuo Chen, Wenhua Qin, Hanyu Ren, Ziyi Liu, Kae Nemoto, William John Munro, Yingqiu Mao, Johannes Majer

A three-dimensional multimode lumped-element resonator for collective spin manipulation and dispersive readout

We report a three-dimensional lumped-element multimode microwave resonator that enables homogeneous collective manipulation and dispersive readout of a macroscopic spin ensemble. By exploiting geometric symmetry, two antisymmetric modes with strongly suppressed cross-talk are engineered to spatially overlap and couple to the same...

💬 0 commentsarXiv:2601.05476v1PDF
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Posted in physics.comp-ph · 2026-01-09 · Mayank Shekhar, Ayyappan Unnikrishna Pillai, Subhayan De, Mohammad Masiur Rahaman

Level set-based topology optimization of micropolar solids under thermo-mechanical loading

We propose a novel level set-based topology optimization for micropolar solids subjected to thermo-mechanical loading. To capture the size effects, we have incorporated the microstructural length-scale information into the level set-based topology optimization method by adopting a micropolar theory. The proposed non-local topology...

💬 0 commentsarXiv:2601.11607v1PDF
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Posted in hep-ph · 2026-01-09 · Jack A. Devlin, Marko L. Wojtkowiak, Shreyak R. Banhatti, He Zhang, Jiacheng Shi, Toren S. Dofher, Jonathan M. H. Gosling, Michael R. Tarbutt, Richard C. Thompson

A Penning trap single-photon counter for axion detection

Discovering the microscopic composition of dark matter is one of the most important open problems in physics today. Axions are a leading candidate to be dark matter; however, a search of the full range of all likely axion masses is hampered by the standard quantum noise limit. This makes haloscope searches for axions with masses above...

💬 0 commentsarXiv:2601.05472v2PDF