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Physics

arXiv preprints from January 1, 2026 through September 8, 2026 — 04:59:04 EST

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Posted in cond-mat.stat-mech · 2026-01-14 · Ivan N. Burenev, Michael J. Kearney, Satya N. Majumdar

A first passage problem for a Poisson counting process with a linear moving boundary

The time to first crossing for the Poisson counting process with respect to a linear moving barrier with offset is a classic problem, although key results remain scattered across the literature and their equivalence is often unclear. Here we present a unified and pedagogical treatment of two approaches: the direct time-domain approach...

💬 0 commentsarXiv:2601.09296v2PDF
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Posted in hep-th · 2026-01-14 · Chen Bai, Weibo Mao, Masahiro Nozaki, Mao Tian Tan, Xueda Wen

Relaxation Process During Complex Time Evolution In Two-Dimensional Integrable and Chaotic CFTs

We investigate the complex time evolution of a vacuum state with the insertion of a local primary operator in two-dimensional conformal field theories (2d CFTs). This complex time evolution can be considered as a composite process constructed from Lorentzian time evolution and a Euclidean evolution induced by a post-selected...

💬 0 commentsarXiv:2601.09290v1PDF
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Posted in physics.comp-ph · 2026-01-14 · Xuanzhao Gao, Shidong Jiang, Jiuyang Liang, Qi Zhou

An $O(\log N)$ Monte Carlo method for periodic Coulomb systems

Efficient Monte Carlo (MC) sampling of many-body systems with long-range electrostatics is often limited by the cost of per-move energy-difference evaluation under periodic boundary conditions. We present DMK-MC, an accelerated MC method that adapts the dual-space multilevel kernel-splitting (DMK) framework to single-particle...

💬 0 commentsarXiv:2601.09288v1PDF
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Posted in cond-mat.mes-hall · 2026-01-14 · Suchetana Mukhopadhyay, David Muradas-Belinchon, Francesco Foggetti, Peter M. Oppeneer, M. Venkata Kamalakar, Anjan Barman

Tunnel-Barrier-Engineered Ultrafast Demagnetization and Spin Transport in Graphene-Based Heterostructures

Heterostructures combining graphene with 3d transition metal ferromagnets (FMs) enable various spin-based phenomena at ultrafast timescales. However, challenges such as the interfacial impedance mismatch, FM deposition-induced defect generation, and interface modification by interfacial coupling or hybridization can impede their...

💬 0 commentsarXiv:2601.09284v1PDF
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Posted in cond-mat.soft · 2026-01-14 · Fernando Alonso-Marroquin, Abdullah Alqubalee, Christian Tantardini

Representative-volume sizing in finite cylindrical computed tomography by low-wavenumber spectral convergence

Choosing a representative element volume (REV) from finite cylindrical Computed Tomography (CT) scans becomes ambiguous when a key field variable exhibits a slow axial trend, reflecting either geological variability or CT acquisition/reconstruction artifacts. In such cases, estimated statistics may vary systematically with subvolume...

💬 0 commentsarXiv:2601.09283v3PDF
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Posted in cond-mat.stat-mech · 2026-01-14 · Michele Caraglio

Two-Dimensional Active Brownian Particles Crossing a Parabolic Barrier: Transition-Path Times, Survival Probability, and First-Passage Time

We derive an analytical expression for the propagator and the transition path time distribution of a two-dimensional active Brownian particle crossing a parabolic barrier with absorbing boundary conditions at both sides. By taking those of a passive Brownian particle as basis states and dealing with the activity as a perturbation, our...

💬 0 commentsarXiv:2601.15310v1PDF
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Posted in quant-ph · 2026-01-14 · Chihiro Tago, Takashi Kakue, Ken Morita

Geometric Hybrid Poincaré Sphere with Variable Poles

We propose a geometric hybrid Poincaré sphere (GHPS) as a unified geometrical framework for describing structured photon states with independently controllable spin angular momentum (SAM) and orbital angular momentum (OAM). Unlike the conventional higher-order Poincaré sphere, in which the SAM and OAM are intrinsically coupled through...

💬 0 commentsarXiv:2601.09279v1PDF
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Posted in cond-mat.mes-hall · 2026-01-14 · Thomas Garm Pedersen

One-Dimensional Frenkel and Wannier Excitons in Electric Fields: Stark Effect, Ionization, Polarizability and Electroabsorption

One-dimensional semiconductors are characterized by strongly bound excitons. Therefore, the Frenkel regime of excitons localized within a few unit cells is readily reached and traditional Wannier exciton models become inadequate. In the presence of strong electric fields, excitons are polarized and, in extreme cases, ionized. Such...

💬 0 commentsarXiv:2601.09272v1PDF
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Posted in gr-qc · 2026-01-14 · Soumya Chakrabarti, Nandan Roy

Chiellini-Integrable Cosmologies with Phantom Divide Crossing

We investigate exact cosmological solutions with a massive scalar field minimally coupled to the Einstein-Hilbert action in General Relativity. For an extended Higgs-like scalar self-interaction, we find that the resulting field equations belong to the damped Ermakov-Painlevé II class and construct novel analytical solutions within...

💬 0 commentsarXiv:2601.09271v1PDF
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Posted in cond-mat.str-el · 2026-01-14 · Satoru Hayami, Kazuki Okigami

Multiple-$Q$ spin textures induced by spiral--staggered interference in one-dimensional itinerant magnets

We theoretically investigate multiple-$Q$ magnetic states emerging from the interference between finite-$Q$ spiral and staggered spin modulations in a one-dimensional itinerant electron system. The multiple-$Q$ spin textures are characterized by a superposition of symmetry-unrelated ordering wave vectors in the same direction with...

💬 0 commentsarXiv:2601.09267v1PDF
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Posted in quant-ph · 2026-01-14 · Satoshi Ohya

Scale Invariance Breaking and Discrete Phase Invariance in Few-Body Problems

Scale invariance in quantum mechanics can be broken in several ways. A well-known example is the breakdown of continuous scale invariance to discrete scale invariance, whose typical realization is the Efimov effect of three-body problems. Here we discuss yet another discrete symmetry to which continuous scale invariance can be broken:...

💬 0 commentsarXiv:2601.09266v2PDF
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Posted in cond-mat.str-el · 2026-01-14 · Qian Xiao, Xiangqi Liu, Zihao Huang, Xiquan Zheng, Shilong Zhang, Hui Chen, Hong-Jun Gao, Yanfeng Guo, Yingying Peng

Evolution from three-dimensional charge density wave to one-dimensional stripe order in CsV$_{3-x}$Ti$_x$Sb$_5$

Understanding intertwined phases near quantum criticality is a central challenge in correlated electron systems. The kagome metal CsV$_{3-x}$Ti$_x$Sb$_5$ provides a fertile platform to investigate the interplay between charge-density-wave (CDW) and superconductivity. Here, combining x-ray diffraction (XRD) and scanning tunneling...

💬 0 commentsarXiv:2601.09257v1PDF
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Posted in hep-th · 2026-01-14 · Keisuke Ohashi

Ghost-Free Stable Minkowski Vacua in Lovelock Compactifications on Irreducible Symmetric Spaces

We study the compactification of higher-dimensional Lovelock gravity on compact irreducible symmetric spaces, focusing on conditions under which a physically healthy four-dimensional Minkowski vacuum exists. We show that when the internal dimension is five or less, or when the theory is restricted to the Einstein-Gauss-Bonnet sector,...

💬 0 commentsarXiv:2601.09256v1PDF
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Posted in physics.atom-ph · 2026-01-14 · Amol R. Holkundkar

High-harmonic generation as a tunneling delay probe

We investigate the feasibility of using high-harmonic generation (HHG) as a complementary probe of tunneling delay in strong-field ionization. By combining time--frequency analysis of HHG spectra obtained from full time-dependent Schrödinger equation (TDSE) simulations with classical three-step-model (TSM) trajectories, we extract an...

💬 0 commentsarXiv:2601.09252v1PDF
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Posted in physics.class-ph · 2026-01-14 · Anton Galajinsky

Remarks on Galilean electromagnetism

It is shown that equations describing the Galilean electromagnetism in the presence of sources hold invariant under the l-conformal Galilei group for an arbitrary (half)integer parameter l. The group contains transformations which link an inertial frame of reference to those moving with constant accelerations of order up to 2l-1, thus...

💬 0 commentsarXiv:2601.09761v2PDF
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Posted in hep-ex · 2026-01-14 · MingKuan Yuan, TianZi Song, ZhengYun You

Search for Charged Lepton Flavor Violation at BESIII

Charged lepton flavor violation (CLFV) is forbidden in the Standard Model but predicted by many new physics models. We present searches for CLFV in charmonium decays using world-leading datasets collected by the BESIII detector. The processes $J/ψ\to eτ$, $J/ψ\to eμ$, and $ψ(3686)\to eμ$ are investigated using world-leading $J/ψ$ and...

💬 0 commentsarXiv:2601.09249v1PDF
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Posted in nlin.SI · 2026-01-14 · Kohei Fukai, Kyoichi Yamada

Matrix product operator representations for the local conserved quantities of the spin-$1/2$ XYZ chain

We present explicit matrix product operator (MPO) representations for the local conserved quantities of the spin-$1/2$ XYZ chain. Through these MPO representations, we simplify the coefficients appearing in the local conserved quantities originally derived by one of the authors, and reveal their combinatorial meaning: the coefficients...

💬 0 commentsarXiv:2601.09245v1PDF
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Posted in quant-ph · 2026-01-14 · Jun-Ling Wang, Yi-bo Liu, Qing-Hu Chen

Emergence of Rich Dissipative Phases in the Anisotropic Quantum Rabi Model Driven by the $\mathbf{A}^{2}$ Term

The open quantum Rabi model is studied in this work, with the explicit $\mathbf{A}^{2}$ term incorporated. It is shown that anisotropy provides a generic and robust mechanism for establishing a genuine platform for observing dissipative phase transitions. The inclusion of the $\mathbf{A}^{2}$ term yields a significantly richer and...

💬 0 commentsarXiv:2601.09414v2PDF
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Posted in physics.ins-det · 2026-01-14 · R. Turrisi

The ePIC Silicon Vertex Tracker: Design and Status

The ePIC collaboration is developing a multidetector system to explore the fundamental properties of the strong interaction at the future Electron-Ion Collider (EIC), to be built at Brookhaven National Laboratory. A key component of the ePIC detector is the Silicon Vertex Tracker (SVT), which provides high-precision tracking and...

💬 0 commentsarXiv:2601.09408v1PDF
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Posted in astro-ph.CO · 2026-01-14 · Yu-Ming Yang, Xiao-Jun Bi, Long Wang, Peng-Fei Yin

Collapse versus Disruption: The Fate of Compact Stellar Systems in Ultralight Dark Matter Halos

Interference of the ultralight dark matter (ULDM) field generates time-varying gravitational potential fluctuations, which stochastically heat stellar systems embedded in ULDM halos. Small-sized stellar systems are therefore often used to set stringent constraints on ULDM. However, the evolution of systems with sizes well below the...

💬 0 commentsarXiv:2601.09403v1PDF
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Posted in astro-ph.EP · 2026-01-14 · G. Piccinini, A. Petralia, A. Sozzetti, S. Benatti, D. Gandolfi, G. Micela

True Masses using RV data with Hipparcos and Gaia Astrometry

Long-period companions are detected and characterized thanks to long-baseline radial velocity surveys. Combining Doppler time-series with astrometry, and in particular with proper motion anomalies technique, it is possible to put strong constraints on their orbital inclination and true mass. This work aims to present a model that...

💬 0 commentsarXiv:2601.09401v1PDF
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Posted in astro-ph.HE · 2026-01-14 · The CHIME/FRB Collaboration, :, Thomas Abbott, Bridget C. Andersen, Shion Andrew, Kevin Bandura, Mohit Bhardwaj, Yash Bhusare, Charanjot Brar, Tomas Cassanelli, Shami Chatterjee, Jean-Francois Cliche, Amanda M. Cook, Alice Curtin, Matt Dobbs, Fengqiu Adam Dong, Gwendolyn Eadie, Tarraneh Eftekhari, Emmanuel Fonseca, B. M. Gaensler, Deborah Good, Mark Halpern, Jason W. T. Hessels, Adaeze Ibik, Naman Jain, Ronniy C. Joseph, Zarif Kader, Victoria M. Kaspi, Afrokk Khan, Bikash Kharel, Ajay Kumar, T. L. Landecker, Dustin Lang, Adam E. Lanman, Magnus L'Argent, Mattias Lazda, Calvin Leung, Dong Zi Li, Chris J. Lintott, Robert Main, Kiyoshi W. Masui, Sujay Mate, Kyle McGregor, Ryan Mckinven, Juan Mena-Parra, Bradley W. Meyers, Daniele Michilli, Cherry Ng, Mason Ng, Kenzie Nimmo, Gavin Noble, Ayush Pandhi, Swarali S. Patil, Aaron B. Pearlman, Ue-Li Pen, Ziggy Pleunis, J. Xavier Prochaska, Masoud Rafiei-Ravandi, Scott Ransom, Andre Renard, Mawson W. Sammons, Ketan R. Sand, Paul Scholz, Vishwangi Shah, Kaitlyn Shin, Seth R. Siegel, Sloane Sirota, Kendrick Smith, Ingrid Stairs, David C. Stenning, Shriharsh P. Tendulkar, Keith Vanderlinde, Mike Walmsley, Haochen Wang, Dallas Wulf

The Second CHIME/FRB Catalog of Fast Radio Bursts

We present a catalog of 4539 fast radio bursts (FRBs) observed with the Canadian Hydrogen Intensity Mapping Experiment (CHIME) telescope between 25 July 2018 and 15 September 2023. These bursts originate from 3641 unique sources, including 981 bursts from 83 known repeating sources. For each FRB, the catalog provides a $O(10')$...

💬 0 commentsarXiv:2601.09399v1PDF
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Posted in hep-th · 2026-01-14 · Parijat Dey, Arundhati Goldar, Nirmalya Kajuri

Geodesics, One Point Functions and Black Hole Perturbations

Holographic black holes exhibit a striking relation between thermal boundary one-point functions and bulk geodesic lengths. In the large conformal-dimension limit, the one-point function of a primary operator is given by the exponential of the geodesic length from its boundary insertion point to the horizon. We test the robustness of...

💬 0 commentsarXiv:2601.09397v4PDF
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Posted in cond-mat.supr-con · 2026-01-14 · Paul Leask, Calum Ross, Egor Babaev

Interactions of composite magnetic skyrmion-superconducting vortex pairs in ferromagnetic superconductors

We study composite topological excitations in ferromagnetic superconductors consisting of bound states of magnetic spin textures (skyrmions) and superconducting vortices. Using a Ginzburg--Landau framework with Zeeman coupling between the magnetization and superconducting magnetic field, we demonstrate that skyrmion-vortex pairs...

💬 0 commentsarXiv:2601.09396v1PDF
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Posted in hep-ph · 2026-01-14 · Masaki J. S. Yang

Explicit rephasing to Kobayashi-Maskawa representation and fundamental phase structure of CP violation

In this letter, we construct an explicit rephasing transformation that converts an arbitrary unitary matrix into the Kobayashi--Maskawa (KM) parameterization and identify all independent CP phases in the mixing matrix as the arguments of its matrix elements. Furthermore, by applying this rephasing transformation to the fermion...

💬 0 commentsarXiv:2601.09389v2PDF