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Physics

arXiv preprints from January 1, 2026 through September 6, 2026 — 04:57:17 EST

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Posted in gr-qc · 2026-01-21 · Erick Pasten, Claudia Alvarez, Norman Cruz

Covariant interpretation of proper infall times in Kerr spacetime

We investigate proper infall times in the Schwarzschild and Kerr spacetimes from a covariant perspective, focusing on the role of black--hole rotation in the focusing properties of timelike geodesic congruences.To perform a geometrically consistent comparison between rotating and non--rotating black holes, we analyse infall...

💬 0 commentsarXiv:2601.14664v2PDF
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Posted in astro-ph.HE · 2026-01-21 · R. Alfaro, C. Alvarez, A. Andres, E. Anita-Rangel, M. Araya, J. C. Arteaga-Velazquez, D. Avila Rojas, H. A. Ayala Solares, R. Babu, P. Bangale, E. Belmont-Moreno, A. Bernal, K. S. Caballero-Mora, T. Capistran, A. Carraminana, F. Carreon, S. Casanova, U. Cotti, J. Cotzomi, E. De la Fuente, P. Desiati, N. Di Lalla, R. Diaz Hernandez, M. A. DuVernois, J. C. Diaz-Velez, T. Ergin, C. Espinoza, N. Fraija, S. Fraija, J. A. Garcia-Gonzalez, F. Garfias, N. Ghosh, A. Gonzalez Munoz, M. M. Gonzalez, J. A. Gonzalez, J. A. Goodman, J. Gyeong, J. P. Harding, S. Hernandez-Cadena, I. Herzog, D. Huang, F. Hueyotl-Zahuantitla, A. Iriarte, S. Kaufmann, D. Kieda, A. Lara, W. H. Lee, J. Lee, H. Leon Vargas, A. L. Longinotti, G. Luis-Raya, K. Malone, O. Martinez, J. Martinez-Castro, H. Martinez-Huerta, J. A. Matthews, P. Miranda-Romagnoli, P. E. Miron-Enriquez, J. A. Morales-Soto, E. Moreno, M. Mostafa, M. Najafi, A. Nayerhoda, L. Nellen, M. U. Nisa, R. Noriega-Papaqui, N. Omodei, E. Ponce, Y. Perez Araujo, E. G. Perez-Perez, A. Pratts, C. D. Rho, A. Rodriguez Parra, D. Rosa-Gonzalez, M. Roth, A. Sandoval, M. Schneider, J. Serna-Franco, A. J. Smith, Y. Son, R. W. Springer, O. Tibolla, K. Tollefson, I. Torres, R. Torres-Escobedo, E. Varela, L. Villasenor, X. Wang, Z. Wang, I. J. Watson, H. Wu, S. Yu, X. Zhang, H. Zhou, C. de Leon

Constraints on Axion-Like Particles from Ultra-High-Energy Observations of 3HWC J1908+063 with HAWC

Axion-like particles (ALPs) are hypothetical particles and compelling candidates for cold dark matter. Their existence could be probed through their conversions into photons in the presence of magnetic fields. In this work, we explore the effect of these photon-ALP conversions by searching for an attenuation in the observed gamma ray...

💬 0 commentsarXiv:2601.14661v1PDF
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Posted in physics.optics · 2026-01-21 · Junjun Jia, Minseok Kim, Yuzo Shigesato, Ryotaro Nakazawa, Keisuke Fukutani, Satoshi Kera, Toshiki Makimoto, Takashi Yagi

Transient Pauli blocking in a InN film as a mechanism for broadband ultrafast optical switching

The transient Pauli blocking effect offers a promising route for achieving ultrafast optical switching in semiconductors, enabling a rapid switching from an initially opaque state to a relatively transparent state upon photoexcitation. Herein, we demonstrate broadband ultrafast optical switching in degenerate InN thin films, spanning...

💬 0 commentsarXiv:2601.14656v1PDF
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Posted in physics.med-ph · 2026-01-21 · Hunter D. Ellis, Ajayvarman Mallapillai, Jared Miller, Imteaz Rahaman, Botong Li, Vikren Sarkar, Kai Fu

Dosimetry for Proton Therapy Using a β-Ga$_2$O$_3$ Metal-Semiconductor-Metal Detector with Low-Noise Amplification

Intensity-modulated proton therapy (IMPT) employs proton radiation rather than conventional X-rays to treat cancerous tumors. This approach offers significant advantages by minimizing the radiation exposure of surrounding healthy tissue, leading to improved patient outcomes and reduced side effects compared to traditional X-ray...

💬 0 commentsarXiv:2601.14654v1PDF
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Posted in astro-ph.GA · 2026-01-21 · Hiroma Okubo, Tsutomu T. Takeuchi, Shotaro Akaho, Toshiki Saito, Yasuhiko Igarashi, Nario Kuno, Nanase Harada, Akio Taniguchi, Shuro Takano, Taku Nakajima

A New Framework for Multi-Line Analysis Combined Kernel PCA and Kernel SHAP: A Case of NGC 1068 ALMA Band 3 Data

We present a new framework for multi-line analysis that combines kernel principal component analysis (Kernel PCA), an unsupervised machine-learning method, and Kernel SHapley Additive exPlanations (Kernel SHAP), an explainable artificial intelligence (XAI) technique. To enable a comparison with PCA-based studies, which have been...

💬 0 commentsarXiv:2601.14650v1PDF
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Posted in astro-ph.IM · 2026-01-21 · Md Khairul Islam, Judy Fox

OmniSpectra: A Unified Foundation Model for Native Resolution Astronomical Spectra

We present OmniSpectra, the first native-resolution foundation model for astronomy spectra. Unlike traditional models, which are limited to fixed-length input sizes or configurations, OmniSpectra handles spectra of any length at their original size, without resampling or interpolation. Despite the large-scale spectroscopic data from...

💬 0 commentsarXiv:2601.15351v1PDF
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Posted in physics.optics · 2026-01-21 · David M. Paganin, Kaye S. Morgan

Paraxial diffusion-field retrieval. II. Fokker-Planck generalization of the transport-of-intensity equation

The transport-of-intensity equation (TIE) has been very widely employed for phase retrieval. In particular, the TIE is an elliptic second-order partial differential equation which may be solved for the phase of a coherent paraxial field such as a monochromatic scalar optical beam, given the intensity and longitudinal intensity...

💬 0 commentsarXiv:2601.14645v1PDF
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Posted in cond-mat.mes-hall · 2026-01-21 · Zander Scholl, Ezra Frohlich, Natalie Rogers, Paul Nguyen, Baker Hase, Joseph Tatsuro Murphy, Joel Toledo-Urena, David Cobden, Jennifer T. Heath

Reducing non-linear effects in Kelvin Probe Force Microscopy of back-gated 2D semiconductors

In 2D field effect transistors the gate electrostatically dopes the 2D semiconductor (2DSC) channel, tuning the Fermi level. In principle, Kelvin probe force microscopy (KPFM) can detect the Fermi level, and its dependence on gate bias as well as position, potentially directly yielding band gaps, contact barriers, spatial...

💬 0 commentsarXiv:2601.14644v4PDF
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Posted in quant-ph · 2026-01-21 · Jeongho Bang, Kyoungho Cho, Ki Hyuk Yee

Quantum Interference Needs Convention: Overlap-Determinability and Unified No-Superposition Principle

Quantum superposition is often phrased as the ability to add state vectors. In practice, however, the physical quantity is a ray (a rank-one projector), so each input specifies only a projector and leaves a gauge freedom in the phases of its vector representatives. This becomes a real operational barrier when one asks for a device...

💬 0 commentsarXiv:2601.14638v1PDF
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Posted in hep-ph · 2026-01-21 · Rakshanda Goswami, Pulak Talukdar, Bhoomika Das, Udit Raha, Fred Myhrer

Elastic lepton-proton two-photon exchange scattering: An exact HB$χ$PT analysis including hadronic effects at NNLO

We present an exact analytical evaluation of the two-photon exchange (TPE) correction to the elastic lepton-proton differential scattering cross section at low-energies within the framework of heavy-baryon chiral perturbation theory. Our analysis focuses on the kinematic regime relevant to the ongoing MUSE experiment, and we therefore...

💬 0 commentsarXiv:2601.14636v1PDF
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Posted in physics.soc-ph · 2026-01-21 · Min-Kyung Chae, Woo-Sik Son, Sang Hoon Lee

The missing links: Evaluating contact tracing with incomplete data in large metropolitan areas during an epidemic

Contact tracing (CT) is a frontline measure against emerging epidemics, yet in practice it is never complete. The quantitative impact of missing information -- such as untraced cases or unnotified contacts -- on the effectiveness of CT remains insufficiently understood. Using a stochastic agent-based model with sociodemographics from...

💬 0 commentsarXiv:2601.14632v2PDF
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Posted in astro-ph.SR · 2026-01-21 · Yu Hu, Bo-Lun Huang, Vishal Gajjar, Xiao-Hang Luan, Zhen-Zhao Tao, Tong-Jie Zhang

SETI Observations of k-Hz Periodic Radio Signals from Five Nearby Stars with FAST at L Band

We report a radio SETI search for periodic, kHz-wide signals from five of the nearest stars observable with the Five-hundred-meter Aperture Spherical radio Telescope (FAST). Using the 19-beam L-band receiver (1.05-1.45 GHz), we obtained 1200 s tracking observations of Groombridge 34 A/B, Ross 248, 61 Cygni B, and Ross 128. Dynamic...

💬 0 commentsarXiv:2601.14630v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-21 · Tobias Schwaigert, Salva Salmani-Rezaie, Sankalpa Hazra, Utkarsh Saha, Maya Ramesh, Aiden Ross, Betul Pamuk, Long-Qing Chen, David A. Muller, Darrell G. Schlom, Venkatraman Gopalan, Kaveh Ahadi

Above Room Temperature Ferroelectricity in Epitaxially Strained KTaO3

Epitaxial strain is a powerful means to engineer emergent phenomena in thin films and heterostructures. Here, we demonstrate that KTaO3, a cubic perovskite in bulk form, can be epitaxially strained into a highly tunable ferroelectric. KTaO3 films grown commensurate to SrTiO3 (001) substrates experience an in-plane strain of -2.1 %...

💬 0 commentsarXiv:2601.14627v2PDF
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Posted in cond-mat.mtrl-sci · 2026-01-21 · Mathias Krämer, Bar Favelukis, J. Manoj Prabhakar, Aleksander Albrecht, Brian A. Rosen, Noam Eliaz, Maxim Sokol, Baptiste Gault

Near-Atomic-Scale Compositional Complexity in a 2D Transition Metal Oxide

2D materials hold transformative promise for next-generation nanoelectronics. However, successfully integrating these materials from laboratory-scale discoveries into real-world devices depends on precisely controlling their properties, which are fundamentally determined by their composition. Detailed characterisation using atom probe...

💬 0 commentsarXiv:2601.14807v1PDF
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Posted in physics.med-ph · 2026-01-21 · Célia Batonon, Heimiri Monnier, Arnaud Gauberville, Léna Connesson

Phantom model for intracranial pressure

This report presents the MOD{È}FONE project, whose objective is to develop a simplified experimental model of the cerebrospinal system in order to investigate fluid-structure interactions and physiological adaptations under altered gravity conditions, with a particular focus on microgravity. The experimental setup is based on a...

💬 0 commentsarXiv:2601.15357v1PDF
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Posted in astro-ph.HE · 2026-01-21 · Natsuki Terano, Takaaki Tanaka, Hiromasa Suzuki, Rei Enokiya, Hiroyuki Uchida, Kai Matsunaga, Takuto Narita, Yasuo Fukui, Toshiki Sato

The Supernova Remnant G284.3$-$1.8 and Its Relation to the Gamma-ray Binary 1FGL J1018.6$-$5856

G284.3$-$1.8 is a supernova remnant with a radio shell and thermal X-ray emission. Located near its center is the gamma-ray binary 1FGL J1018.6$-$5856, although the physical association between the two systems is not clear yet. Our X-ray spectroscopy with Suzaku reveals that G284.3$-$1.8 and 1FGL J1018.6$-$5856 have compatible...

💬 0 commentsarXiv:2601.14801v2PDF
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Posted in quant-ph · 2026-01-21 · Toshihiro Yada, Nobuyuki Yoshioka, Takahiro Sagawa

Testing the equivalence to thermal states via extractable work under LOCC

Understanding the thermal behavior of quantum many-body pure states is one of the most fundamental issues in quantum thermodynamics. It is widely known that typical pure states yield vanishing work, just as thermal states do, when one restricts to local operations that cannot access correlations among subsystems. However, it remains...

💬 0 commentsarXiv:2601.14789v1PDF
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Posted in astro-ph.GA · 2026-01-21 · Yu Pan, Hengxiao Guo, Chenxu Liu, Xinlei Chen, Yuan Fang, Jinghua Zhang, Wenwen Zuo, Philip G. Edwards, Jamie Stevens, Manqi Fu, Mouyuan Sun, Zhen-yi Cai, Guowang Du, Xingzhu Zou, Tao Wang, Xufeng Zhu, Xiangkun Liu, Xiaowei Liu

The Intermediate-Mass Black Hole Reverberation Mapping Project: Stable Optical Continuum Lags of an IMBH in the Dwarf Galaxy NGC 4395 Over Years

NGC 4395 is a nearby dwarf spiral galaxy hosting an active galactic nucleus (AGN) powered by an intermediate-mass black hole (IMBH, $M_{\rm BH} \sim 10^{4}$--$10^{5}\,M_\odot$). Recent optical continuum reverberation mapping studies have suggested potential lag variations between different epochs, offering important clues to the...

💬 0 commentsarXiv:2601.14787v2PDF
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Posted in gr-qc · 2026-01-21 · Xin Li, Sen Guo, Pei Wang, En-Wei Liang, Huan Deng, Yu Liang, Xiao-Xiong Zeng, Kai Lin, Qing-Quan Jiang

Polarized Radiative Transfer of Kerr-Newman Black Hole

In this analysis, we investigate the polarization radiation imaging of Kerr-Newman black holes, with a particular focus on the impact of black hole charge on photon propagation and polarization characteristics. By extending the traditional Walker-Penrose method, which is limited by its reliance on specific symmetric structures and...

💬 0 commentsarXiv:2601.14785v2PDF
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Posted in physics.ins-det · 2026-01-21 · O. Pavlas, B. Bergmann, M. Holik, M. Malich, S. Pospisil, P. Smolyanskiy, V. Vicha, R. Filgas

Introducing Timepix2-Lite: A Miniaturized Readout Interface Enabling Nanosecond-Scale Half-Life Measurement

This paper presents Timepix2 Lite, a compact readout interface for the Timepix2 hybrid pixel detector, designed to provide high spatial and temporal resolution in a wide range of radiation detection applications. The Timepix2 Lite enables simultaneous energy and precise timing measurements on the nanosecond scale and supports advanced...

💬 0 commentsarXiv:2601.14782v1PDF
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Posted in astro-ph.GA · 2026-01-21 · D. Hutsemékers, F. Marin, B. Agis González, J. -A. Acosta Pulido, M. Kokubo

Polarization properties of changing-look active galactic nuclei: NGC 1365 and NGC 2992

Changing-look active galactic nuclei (CLAGNs) represent a rare class of AGNs that undergo transitions from type 1 (characterized by the presence of broad emission lines in their spectra) to type 2 (absence of broad emission lines) or vice versa, over timescales ranging from months to years. Since normal type 1 and type 2 AGNs are...

💬 0 commentsarXiv:2601.14781v1PDF
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Posted in hep-th · 2026-01-21 · Claudio Gambino

From Quantum Amplitudes to Spacetime Geometry: a Multipolar Framework for Black Hole Signatures

This thesis develops a unified framework that reconstructs the full classical content of General Relativity from the classical limit of quantum scattering amplitudes. By interpreting the analytic structure of amplitudes as the field-theoretic imprint of spacetime geometry, the work establishes a direct correspondence between quantum...

💬 0 commentsarXiv:2601.14775v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-21 · Adrian Braun, Henrik Dick, Timon Sieweke, Alexander Kunzmann, Klara Lünser, Gabi Schierning, Thomas Dahm

Influence of Charge Density Waves on the Hall coefficient in NiTi

We present a mean-field charge density wave theory for NiTi using density functional theory bandstructure as a starting point. We calculate the Hall coefficient as a function of temperature and compare with recent experimental results. We analyze the contributions to the Hall coefficient from different parts of the Fermi surface and...

💬 0 commentsarXiv:2601.14772v1PDF
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Posted in cond-mat.mes-hall · 2026-01-21 · Marwa Mannai, Yaoyao Shu, Sonia Haddad, Mina Ren, Hong Chen, Yong Sun, Hisham Sati

Realization of staircase topological Anderson phase transitions

One-dimensional topological Anderson insulators provide a paradigm for disorder-induced topological phases in which the underlying system turns from a trivial to a topological phase. It is widely recognized that the latter vanishes at large disorder amplitude. Here, and contrary to the general belief, we provide evidence for a...

💬 0 commentsarXiv:2601.14769v1PDF
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Posted in physics.ins-det · 2026-01-21 · M. N. Mazziotta, A. Di Mauro, M. Giliberti, A. Liguori, L. Lorusso, E. Nappi, N. Nicassio, G. Panzarini, R. Pillera, G. Volpe

Efficient and precise Cherenkov-based charged particle timing using SiPMs

Dedicated R&D efforts are currently underway to couple a thin Cherenkov radiator to Silicon Photomultiplier (SiPM) arrays for precise charged particle Time-of-Flight (ToF) measurements. The prompt nature of Cherenkov radiation makes it an ideal candidate for achieving ultimate timing performance in a ToF detector. Using a thin...

💬 0 commentsarXiv:2601.14768v1PDF