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arXiv preprints from January 1, 2026 through July 21, 2026 — 15:19:03 EST

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Posted in astro-ph.GA · 2026-01-15 · Madeline Lucey, Vedant Chandra, Alexander Ji, Andrew Casey, David Nidever, Sean Morrison, Robyn Sanderson, Slater Oden, José Fernández-Trincado, Guilherme Limberg

Discovery of the First Five Carbon-Enhanced Metal-Poor Stars in the LMC

A substantial fraction of metal-poor stars in the local Milky Way halo exhibit large overabundances of carbon. These stars, dubbed Carbon-Enhanced Metal-Poor (CEMP) stars, provide crucial constraints on the nature of the early universe including the earliest nucleosynthetic events. Whether these stars exist at similar rates in nearby...

💬 0 commentsarXiv:2601.10514v2PDF
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Posted in astro-ph.EP · 2026-01-15 · Anna Sommerville-Thomas, Mihkel Kama, Oliver Shottle, Jason Ran

sponchpop: Population synthesis to investigate volatile sulfur as a fingerprint of gas giant formation histories

Planet population synthesis is an integral tool for linking exoplanets to their formation environments. Most planet population synthesis studies have focused on the carbon-to-oxygen ratio (C/O) in gas or solids, yet more insight into planet formation may be afforded by considering a wider suite of elements. Sulfur is one such key...

💬 0 commentsarXiv:2601.10508v2PDF
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Posted in cond-mat.mtrl-sci · 2026-01-15 · Christina Schmitt, August Johansson, Xavier Raynaud, Eibar Joel Flores Cedeño, John Mugisa, Dane Sotta, Agathe Martin, Nicolas Schaeffer, Cédric Debruyne, Yvan Reynier, Simon Clark, Dennis Kopljar

Comprehensive parameter and electrochemical dataset for a 1 Ah graphite/LNMO battery cell for physical modelling as a blueprint for data reporting in battery research

While current technology has enabled their widespread use, further improvements are needed for stationary, portable, and mobile applications, for example by the development of novel cathode materials. Digitalization of battery development, combining both experimental and modelling efforts is extremely valuable in this development....

💬 0 commentsarXiv:2601.10507v1PDF
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Posted in hep-th · 2026-01-15 · A. Mironov, A. Morozov, A. Popolitov

Twisted Cherednik spectrum as a $q,t$-deformation

The common eigenfunctions of the twisted Cherednik operators can be first analyzed in the limit of $q\longrightarrow 1$. Then, the polynomial eigenfunctions form a simple set originating from the symmetric ground state of non-vanishing degree and excitations over it, described by non-symmetric polynomials of higher degrees and...

💬 0 commentsarXiv:2601.10500v2PDF
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Posted in gr-qc · 2026-01-15 · Jan Ambjorn, Yoshiyuki Watabiki

The emergence of our Universe

We show how our Universe can emerge from a symmetry breaking of a multicomponent $W_3$ algebra, where the components in addition form a Jordan algebra. We discuss how symmetry breaking related to the Jordan algebras $H_3(C)$ and $H_3(O)$ over the complex and octonion numbers can lead to an extended four-dimensional spacetime, where...

💬 0 commentsarXiv:2601.10499v1PDF
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Posted in cond-mat.mtrl-sci · 2026-01-15 · Andrea Orlando-cunnac, Arthur Arnaud, Martien Den Hertog, Ettore Coccato, Vincent Calvo, Jonathan Steckel, Eva Monroy

Growth and Morphology of InN Nanowires on Si<111> and Si<100> at Back-End-Of-Line Compatible Temperatures

InN nanowires were grown on Si<111> and Si<100> substrates by plasma-assisted molecular beam epitaxy using a thin AlN buffer layer at temperatures compatible with the thermal budget limitation imposed by Back-End-Of-Line processing. Reflection high-energy electron diffraction reveals different nucleation behaviors on the two substrate...

💬 0 commentsarXiv:2601.10495v1PDF
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Posted in cond-mat.mes-hall · 2026-01-15 · Suheng Xu, Birui Yang, Nishchhal Verma, Rocco A. Vitalone, Brian Vermilyea, Miguel Sánchez Sánchez, Julian Ingham, Ran Jing, Yinming Shao, Tobias Stauber, Angel Rubio, Milan Delor, Mengkun Liu, Michael M. Fogler, Cory R. Dean, Andrew Millis, Raquel Queiroz, D. N. Basov

Plasmon dynamics in graphene

Plasmon are collective oscillations of mobile electrons with dynamics controlled by their charge stiffness("Drude weight"). Using terahertz spacetime metrology, we probe Plasmon dynamics of mono- and bi-layer graphene. In both systems, the experimentally measured Drude weight systematically exceeds the prediction based on...

💬 0 commentsarXiv:2601.10493v3PDF
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Posted in quant-ph · 2026-01-15 · Liang Chen, Wen-Yi Zhu, Zi-Jie Chen, Zhu-Bo Wang, Ya-Dong Hu, Qing-Xuan Jie, Guang-Can Guo, Chang-Ling Zou

Optimized readout strategies for neutral atom quantum processors

Neutral atom quantum processors have emerged as a promising platform for scalable quantum information processing, offering high-fidelity operations and exceptional qubit scalability. A key challenge in realizing practical applications is efficiently extracting readout outcomes while maintaining high system throughput, i.e., the rate...

💬 0 commentsarXiv:2601.10492v1PDF
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Posted in cond-mat.str-el · 2026-01-15 · I. Jakovac, M. S. Grbić, M. Dupont, N. Laflorencie, S. Capponi, Y. Hosokoshi, S. Krämer, Y. Skourski, S. Luther M. Takigawa, M. Horvatić

Magnetic field-induced phases in a model S=1 Haldane chain system

An $S=1$ Haldane chain is a one-dimensional (1D) quantum magnet where strong fluctuations result in quantum disordered singlet ground state with a gapped excitation spectrum. The gap magnitude is primarily set by the dominant intrachain interaction ($J_\text{1D}$). An applied magnetic field closes the gap at $B_\text{c1}$ and drives...

💬 0 commentsarXiv:2601.10489v1PDF
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Posted in math-ph · 2026-01-15 · Jani Lukkarinen, Sakari Pirnes, Aleksis Vuoksenmaa

Finite lattice kinetic equations for bosons, fermions, and discrete NLS

We introduce and study finite lattice kinetic equations for bosons, fermions, and discrete NLS. For each model this closed evolution equation provides an approximate description for the evolution of the appropriate covariance function in the system. It is obtained by truncating the cumulant hierarchy and dropping the higher order...

💬 0 commentsarXiv:2601.10486v1PDF
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Posted in hep-th · 2026-01-15 · Nikita Tsegelnik

The Static Heavy Quark-Antiquark Potential within String Theory in Arbitrary Stationary Backgrounds

We consider a static open string in arbitrary stationary spacetime, which can represent a heavy quark-antiquark pair within the holographic framework or effective theory. Generally, the string profile is not symmetric with respect to the turning point, and the symmetry restores for a simple string configuration in backgrounds with...

💬 0 commentsarXiv:2601.10668v3PDF
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Posted in astro-ph.EP · 2026-01-15 · Yifan He, Yixuan Wu, Yifei Jiao, Wen-Yue Dai, Xin Liu, Bin Cheng, Hexi Baoyin

Observation Timelines for the Potential Lunar Impact of Asteroid 2024 YR4

The near-Earth asteroid 2024 YR4 -- a $\sim$60 m rocky object that was once considered a potential Earth impactor -- has since been ruled out for Earth but retained a $\sim$4.3% probability of striking the Moon in 2032. Such an impact, with equivalent kinetic energy of $\sim$6.5 Mt TNT, is expected to produce a $\sim$1 km crater on...

💬 0 commentsarXiv:2601.10666v1PDF
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Posted in physics.optics · 2026-01-15 · Shiyu Li, Cheng Guo

Optimal universal bounds for waves with varied coherence based on supremum and infimum coherence spectra

We establish a majorization-based theory for bounding observables of waves with varied coherence. For any measurement, exact bounds are attained by the maximal and minimal elements in the set of input coherence spectra. The set's supremum and infimum, which may lie outside the set, provide optimal universal bounds: any alternative...

💬 0 commentsarXiv:2601.10665v1PDF
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Posted in quant-ph · 2026-01-15 · Carlo Cafaro, James Schneeloch

Geometric Aspects of Entanglement Generating Hamiltonian Evolutions

We examine the pertinent geometric characteristics of entanglement that arise from stationary Hamiltonian evolutions transitioning from separable to maximally entangled two-qubit quantum states. From a geometric perspective, each evolution is characterized by means of geodesic efficiency, speed efficiency, and curvature coefficient....

💬 0 commentsarXiv:2601.10662v2PDF
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Posted in physics.flu-dyn · 2026-01-15 · Mohan Padmanabha, Jörg Kuhnert, Nicolas R. Gauger, Pratik Suchde

Boundary treatment algorithms for meshfree RANS turbulence modeling

In this paper, we propose improved wall-treatment strategies for meshfree methods applied to turbulent flows. The goal is to enhance wall-function handling in simulations of high-Reynolds-number turbulent flows and to understand the performance of turbulence models within these frameworks. While wall-function techniques are well...

💬 0 commentsarXiv:2601.10661v2PDF
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Posted in quant-ph · 2026-01-15 · Georgios Theologou, Mikkel F. Andersen, Sandro Wimberger

Counterdiabatic driving for random-gap Landau-Zener transitions

The Landau--Zener (LZ) model describes a two-level quantum system that undergoes an avoided crossing. In the adiabatic limit, the transition probability vanishes. An auxiliary control field $H_\text{CD}$ can be reverse-engineered so that the full Hamiltonian $H_0 + H_\text{CD}$ reproduces adiabaticity for all parameter values. Our aim...

💬 0 commentsarXiv:2601.10659v1PDF
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Posted in physics.soc-ph · 2026-01-15 · Joseph Uguet, Nicola Tollin, Jordi Morato

Transforming Crises into Opportunities: From Chaos to Urban Antifragility

Urban crises - floods, pandemics, economic shocks, and conflicts - function as accelerators of urban change, exposing structural vulnerabilities while creating windows for reinvention. Building on a prior theoretical contribution that identified fifteen principles of urban antifragility, this paper tests and operationalizes the...

💬 0 commentsarXiv:2601.10658v1PDF
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Posted in quant-ph · 2026-01-15 · Carlo Cafaro, James Schneeloch

Symmetry-Based Perspectives on Hamiltonian Quantum Search Algorithms and Schrodinger's Dynamics between Orthogonal States

It is known that the continuous-time variant of Grover's search algorithm is characterized by quantum search frameworks that are governed by stationary Hamiltonians, which result in search trajectories confined to the two-dimensional subspace of the complete Hilbert space formed by the source and target states. Specifically, the...

💬 0 commentsarXiv:2601.10655v2PDF
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Posted in quant-ph · 2026-01-15 · M. P. Tonne, Kh. P. Gnatenko

Quantifying the properties of evolutionary quantum states of the XXZ spin model using quantum computing

The entanglement distance of evolutionary quantum states of a two-spin system with the XXZ model has been studied. The analysis has been conducted both analytically and using quantum computing. An analytical dependence of the entanglement distance on the values of the model coupling constants and the parameters of the initial states...

💬 0 commentsarXiv:2601.10650v2PDF
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Posted in cond-mat.stat-mech · 2026-01-15 · Rupak Majumder, Shamik Gupta

Synchronization with Annealed Disorder and Higher-Harmonic Interactions in Arbitrary Dimensions: When Two Dimensions Are Special

The impact of disorder on collective phenomena depends crucially on whether it is quenched or annealed. In synchronization problems, quenched disorder in higher dimensional Kuramoto models is known to produce unconventional dimensional effects, including a striking odd even dichotomy: synchronization transitions are continuous in even...

💬 0 commentsarXiv:2601.10646v1PDF
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Posted in astro-ph.GA · 2026-01-15 · Ksenia I. Smirnova, Dmitri S. Wiebe

HII regions in NGC 628: the view of two catalogs

The study is devoted to comparing the parameters of the interstellar medium of HII regions in the Kongiu and Groves catalogs for the galaxy NGC 628. The article analyzes the characteristics of star-forming regions, including a comparison of radiation fluxes in the ranges of 7.7 $μ$m and 21 $μ$m and in the H$α$, H$β$, OIII and CO...

💬 0 commentsarXiv:2601.10642v1PDF
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Posted in astro-ph.CO · 2026-01-15 · R. M. Sullivan, E. Gjerløw, M. Galloway, D. J. Watts, R. Aurvik, A. Basyrov, L. A. Bianchi, A. Bonato, M. Brilenkov, H. K. Eriksen, U. Fuskeland, K. A. Glasscock, L. T. Hergt, D. Herman, J. G. S. Lunde, A. I. Silva Martins, M. San, D. Sponseller, N. -O. Stutzer, H. Thommesen, V. Vikenes, I. K. Wehus, L. Zapelli

Cosmoglobe DR2. VI. Disentangling hot and cold thermal dust emission with Planck HFI

We present a four-component high-resolution model of thermal dust emission for microwave and sub-mm frequencies derived from Planck HFI, WHAM and Gaia. The resulting high-resolution model derived here forms the basis for the thermal dust model employed in the Cosmoglobe DR2 reanalysis of COBE-DIRBE. The four dust components are called...

💬 0 commentsarXiv:2601.10640v1PDF
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Posted in cond-mat.mes-hall · 2026-01-15 · Rinsuke Yamada, Daichi Kurebayashi, Yukako Fujishiro, Shun Okumura, Daisuke Nakamura, Fehmi S. Yasin, Taro Nakajima, Tomoyuki Yokouchi, Akiko Kikkawa, Yasujiro Taguchi, Yoshinori Tokura, Oleg A. Tretiakov, Max Hirschberger

Emergent electric field induced by dissipative sliding dynamics of domain walls in a Weyl magnet

The dynamic motion of topological defects in magnets induces an emergent electric field, as exemplified by the continuous flow of skyrmion vortices. However, the electrodynamics underlying this emergent field remains poorly understood. In this context, magnetic domain walls - one dimensional topological defects with two collective...

💬 0 commentsarXiv:2601.10638v1PDF
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Posted in astro-ph.SR · 2026-01-15 · Zihao Yang, Sarah Gibson, Matthias Rempel, Giuliana de Toma

Measuring the Coronal Magnetic Field with 2D Coronal Seismology: A Forward-Modeling Validation

In recent years, a two-dimensional (2D) coronal seismology technique applied to spectral-imaging data from the Coronal Multi-channel Polarimeter (CoMP) and UCoMP has enabled routine measurement of the global coronal magnetic field. The technique combines coronal transverse wave phase speed from Doppler measurements with electron...

💬 0 commentsarXiv:2601.10637v1PDF