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Physics

arXiv preprints from January 1, 2026 through September 10, 2026 — 07:29:57 EST

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Posted in astro-ph.CO · 2026-01-08 · Wencong Hong, Shi Pi, Ao Wang, Zhenyu Zhang

Constraining the Primordial Black Hole Abundance with Space-Based Detectors

Overdense regions can collapse into primordial black holes (PBHs) in the early universe, which are a compelling candidate for dark matter. Current constraints leave the asteroid-mass window the only possible one for PBH to account for all the dark matter, which can only be probed indirectly by the scalar-induced gravitational waves...

💬 0 commentsarXiv:2601.05069v2PDF
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Posted in hep-ph · 2026-01-08 · Leon Mans

Full off-shell $t\bar{t}$ production in the semileptonic channel at the LHC

In this contribution, we summarize our results on the complete NLO predictions for the production of off-shell top quark pairs in the $\ell+j$ channel at the LHC. All NLO QCD and electroweak corrections are consistently included across the full set of LO contributions and partonic subprocesses, while retaining finite-width effects of...

💬 0 commentsarXiv:2601.05067v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-08 · You-Ting Huang, Chao-Cheng Kaun, Ching-Hao Chang

Electrically Controllable Flat Band in Two-Dimensional Electron Gases under Nonuniform Magnetic Fields

Flat bands underlie a diverse range of quantum phenomena, from strongly correlated phases to superconductivity. We theoretically establish that a two-dimensional electron gas under a linear magnetic-field gradient and a transverse electric field exhibits electrically tunable flat bands. At specific field values, these bands become...

💬 0 commentsarXiv:2601.05064v2PDF
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Posted in physics.med-ph · 2026-01-08 · Jelmer van Lune, Stefano Mandija, Oscar van der Heide, Matteo Maspero, Martin B. Schilder, Jan Willem Dankbaar, Cornelis A. T. van den Berg, Alessandro Sbrizzi

Quantitative mapping from conventional MRI using self-supervised physics-guided deep learning: applications to a large-scale, clinically heterogeneous dataset

Magnetic resonance imaging (MRI) is a cornerstone of clinical neuroimaging, yet conventional MRIs provide qualitative information heavily dependent on scanner hardware and acquisition settings. While quantitative MRI (qMRI) offers intrinsic tissue parameters, the requirement for specialized acquisition protocols and reconstruction...

💬 0 commentsarXiv:2601.05063v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-08 · Elzbieta Guziewicz, Bronislaw A. Orlowski, Bogdan J. Kowalski

Electronic structure of Sn(1-x)Mn(x)Te semiconducting solid solution: a resonant photoemission study

Manganese-doped tin telluride, Sn(1-x)Mn(x)Te, initially investigated as diluted magnetic semiconductor, has recently attracted considerable attention as a prospective thermoelectric material. The introduction of Mn was found to modify the valence band electronic structure, resulting in an improvement in the Seebeck coefficient and...

💬 0 commentsarXiv:2601.05061v1PDF
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Posted in astro-ph.SR · 2026-01-08 · Valentin Brunn, Fulvia Pucci, Alexandre Marcowith, Marco Padovani, Christian Rab, Christophe Sauty

Energetic particles accelerated via turbulent magnetic reconnection in protoplanetary discs -- I. Ionisation rates

Context. Ionisation controls the chemistry, thermal balance, and magnetic coupling in protoplanetary discs. However, standard ionisation vectors such as stellar UV, X-rays, Galactic cosmic rays (GCRs) might not be efficient enough, as UV/X-rays are attenuated rapidly with depth, while GCRs are modulated. Turbulence-induced magnetic...

💬 0 commentsarXiv:2601.05060v2PDF
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Posted in nucl-th · 2026-01-08 · R. N. Chen, X. Lian, J. M. Yao, C. L. Bai

Benchmarking projected generator coordinate method for nuclear Gamow-Teller transitions

In this work, we aim to achieve a minimal extension of the quantum-number projected generator coordinate method (PGCM) to describe Gamow-Teller (GT) transition strengths in even-even nuclei and to compute the NME of $2νββ$ decay. Within the PGCM framework, the wave functions of odd-odd nuclei are constructed as superpositions of...

💬 0 commentsarXiv:2601.05058v2PDF
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Posted in hep-ph · 2026-01-08 · Francesca Chadha-Day

Axion superradiance

Light bosonic fields may suffer an instability around a rotating compact object. This process, known as superradiance, leads to the exponential amplification of the field around a black hole or neutron star, while the spin of the central object is correspondingly depleted. The discovery of a highly spinning black hole could therefore...

💬 0 commentsarXiv:2601.05055v2PDF
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Posted in astro-ph.HE · 2026-01-08 · Jibril Ben Achour, Ileyk El Mellah, Eric Gourgoulhon

Jet launching from the Kerr black hole magnetosphere: An electrogeodesic approach

The launch of relativistic jets of plasma on astrophysical to cosmological scales is observed in a variety of astrophysical sources, from active galactic nuclei to X-ray binaries. While these jets can be reproduced by general relativistic magneto-hydrodynamics (GRMHD) and particle-in-cells (GRPIC) simulations of the dynamical Kerr...

💬 0 commentsarXiv:2601.05048v2PDF
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Posted in quant-ph · 2026-01-08 · Pritam Chattopadhyay, Jonas F. G. Santos, Avijit Misra

Anomaly to Resource: The Mpemba Effect in Quantum Thermometry

Quantum thermometry provides a key capability for nanoscale devices and quantum technologies, but most existing strategies rely on probes initialized near equilibrium. This equilibrium paradigm imposes intrinsic limitations: sensitivity is tied to long-time thermalization and often cannot be improved in fast, noisy, or nonstationary...

💬 0 commentsarXiv:2601.05046v1PDF
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Posted in physics.med-ph · 2026-01-08 · YeongHyeon Park, Shiqin Su, Sarath Vijayan, Zhiqian Henry Yu, Mandy Cunningham, Yusung Kim

Dosimetric Impact of Hidden Input Parameters in Inverse Optimization Algorithms for GYN HDR Brachytherapy

Inverse optimization (IO) algorithms are used in GYN HDR brachytherapy planning, with user parameter settings embedded in commercial TPS. To examine the dosimetric influence of hidden input parameters in three IO algorithms-IPSA, HIPO, and MCO-for GYN HDR brachytherapy across two applicator types. In-house implementations of IPSA,...

💬 0 commentsarXiv:2601.05045v1PDF
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Posted in physics.flu-dyn · 2026-01-08 · Pavel Gol'din, Gennady Y. Gor

PINN-Based Solution for a Diffusion Controlled Droplet Growth

We study diffusion-controlled growth of a spherical droplet with a moving boundary using a physics-informed neural network (PINN) formulation. The governing diffusion equation is coupled to the interfacial mass balance, with the droplet radius treated as an additional trainable function of time. The PINN accurately reproduces the...

💬 0 commentsarXiv:2601.05042v1PDF
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Posted in gr-qc · 2026-01-08 · Khadije Jafarzade, Saira Yasmin, Mubasher Jamil

Shadow of F(R)-EH Black Hole and Constraints from EHT Observations

This work investigates the optical properties of a static, spherically symmetric, electrically charged black hole in f(R) gravity coupled to Euler-Heisenberg(EH) nonlinear electrodynamics(NLED). By analyzing photon trajectories in this background spacetime, we show how the model parameters affect light propagation, leading to wider...

💬 0 commentsarXiv:2601.05040v2PDF
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Posted in hep-th · 2026-01-08 · Tim Adamo, Bernardo Araneda, Sean Seet

The dual twistor theory of self-dual black holes

The Taub-NUT and Eguchi-Hanson gravitational instantons, along with the self-dual Plebanski-Demianski metric, form a set of Euclidean metrics which can naturally be called `self-dual black holes', as they arise from self-dual slices of the most general vacuum, asymptotically flat black hole metric. These self-dual black holes are of...

💬 0 commentsarXiv:2601.05037v1PDF
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Posted in quant-ph · 2026-01-08 · Milan Liepelt, Julien Baglio

Exponential capacity scaling of classical GANs compared to hybrid latent style-based quantum GANs

Quantum generative modeling is a very active area of research in looking for practical advantage in data analysis. Quantum generative adversarial networks (QGANs) are leading candidates for quantum generative modeling and have been applied to diverse areas, from high-energy physics to image generation. The latent style-based QGAN,...

💬 0 commentsarXiv:2601.05036v1PDF
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Posted in physics.flu-dyn · 2026-01-08 · Andreu F. Gallen, Joan Muñoz Biosca, Mario Castro, Aurora Hernández-Machado

Deformable bodies in a 3-dimensional viscous flow: Vorticity-Stream vector formulation

When simulating three-dimensional flows interacting with deformable and elastic obstacles, current methods often encounter complexities in the governing equations and challenges in numerical implementation. In this work, we introduce a novel numerical formulation for simulating incompressible viscous flows at low Reynolds numbers in...

💬 0 commentsarXiv:2601.05031v2PDF
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Posted in physics.bio-ph · 2026-01-08 · Aitor Morales-Gregorio, Anno C. Kurth, Karolína Korvasová

Geometric developmental principles for the emergence of brain-like weighted and directed neuronal networks

Brain networks exhibit remarkable structural properties, including high local clustering, short path lengths, and heavy-tailed weight and degree distributions. While these features are thought to enable efficient information processing with minimal wiring costs, the fundamental principles that generate such complex network...

💬 0 commentsarXiv:2601.05021v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-08 · Arthur Niedermayr, Jianyu Wu, Bertina Fisher, Ido Kaminer, Jonas Weissenrieder

Correlative Ultrafast Imaging of a Propagating Photo-Driven Phase Transition Using 4D STEM

Oxides exhibiting insulator-metal transitions are promising candidates for next generation ultrafast electronic switching devices. However, critical gaps remain in understanding the onset of strain and its dynamics as these materials undergo structural transitions, particularly in nanostructured configurations. Here, we present...

💬 0 commentsarXiv:2601.05018v1PDF
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Posted in quant-ph · 2026-01-08 · Mohammad Abdullah Sadi, Tiamike Dudley, Luca Basso, Thomas Poirier, James H. Edgar, Jacob Henshaw, Peter A. Bermel, Yong P. Chen, Andrew Mounce

Landau Zener Interaction Enhanced Quantum Sensing in Spin Defects of Hexagonal Boron Nitride

Negatively charged boron vacancies (V$_{\text{B}}^{-}$) in hexagonal boron nitride (hBN) comprise a promising quantum sensing platform, optically addressable at room temperature and transferrable onto samples. However, broad hyperfine-split spin transitions of the ensemble pose challenges for quantum sensing with conventional resonant...

💬 0 commentsarXiv:2601.05013v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-08 · Andrew P. Weber, Iñigo Robredo, Philipp Rüssmann, Maxim Ilyn, Arnaud Magrez, Philippe Bugnon, Nan Xu, Vladimir Strocov, J. Hugo Dil, J. Enrique Ortega, Julen Ibañez-Azpiroz

Control of the MoTe$_2$ Fermi Surface by Nb Doping

Ab initio calculations and angle-resolved photoemission experiments show that the bulk and surface electronic structure of Weyl semimetal candidate MoTe$_2$ changes significantly by tuning the chemical potential by less than 0.4 eV. Calculations show that several Lifshitz transitions can occur among multiple electron and hole Fermi...

💬 0 commentsarXiv:2601.05197v1PDF
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Posted in cond-mat.str-el · 2026-01-08 · Min Long, Zeno Bacciconi, Hongyu Lu, Hernan B. Xavier, Zi Yang Meng, Marcello Dalmonte

Chiral Graviton Modes in Fermionic Fractional Chern Insulators

Chiral graviton modes are hallmark collective excitations of Fractional Quantum Hall (FQH) liquids. However, their existence on the lattice, where continuum symmetries that protect them from decay are lost, is still an open and urgent question, especially considering the recent advances in the realization of Fractional Chern...

💬 0 commentsarXiv:2601.05196v2PDF
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Posted in hep-th · 2026-01-08 · Ahmad Adel Abutaleb

Microscopic Unitarity and the Quantization of Black Hole Evaporation Time

This work presents an effective microscopic, time-dependent Hamiltonian framework for investigating information dynamics during black hole evaporation. While current approaches often rely on gravitational path integrals or statistical ensembles to recover the Page curve, our model provides an explicit, unitary quantum-mechanical...

💬 0 commentsarXiv:2601.05305v1PDF
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Posted in gr-qc · 2026-01-08 · G. Alencar, R. S. Almeida, R. N. Costa Filho, T. M. Crispim, Francisco S. N. Lobo

The End of the Road for Bulk Fields in Warped Randall-Sundrum Braneworlds

In this manuscript we generalize Ref. [1] and derive a complete set of local consistency conditions for bulk fields in braneworld scenarios with an arbitrary number of dimensions. This provides the first fully local and dimension-independent generalization of all known criteria for bulk fields. Within this framework, we show that a...

💬 0 commentsarXiv:2601.05190v2PDF
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Posted in hep-ph · 2026-01-08 · David Delepine, Shaaban Khalil

Non-Thermal Leptogenesis in the BLSM with Inverse Seesaw Mechanism

We investigate the viability of non-thermal leptogenesis in the gauged $U(1)_{B-L}$ extension of the Standard Model (BLSM) with an inverse seesaw (ISS) mechanism for neutrino mass generation. In this framework, right-handed neutrinos typically have $\mathcal{O}(1)$ Yukawa couplings, which induce strong washout effects and render...

💬 0 commentsarXiv:2601.05186v1PDF
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Posted in cond-mat.str-el · 2026-01-08 · Xu-Ping Yao, Chao-Kai Li, Gang v. Chen

Surface chiral Abelian topological order on multilayer cluster Mott insulators

The surface states of a symmetry protected topological state can have many possibilities. Here we propose a chiral Abelian topological order on a distinct surface of a multilayer-stacked cluster Mott insulating system. The first-principle calculation and the slave-rotor mean-field theory are applied to study the surface states of the...

💬 0 commentsarXiv:2601.05185v1PDF