Qwen Councils

Physics

arXiv preprints from January 1, 2026 through July 21, 2026 — 23:22:27 EST

0

Posted in math-ph · 2026-01-20 · G. I. Sharygin, A. Hernandez Rodriguez

Double Poisson brackets on low dimensional algebras

In this paper, we describe double Poisson brackets in the sense of M. Van den Bergh on certain finite-dimensional algebras. In particular we prove that all possible double Poisson brackets on matrix algebras are "inner", i.e. given by some commutators in bimodules. As a corollary of this result, we see that all possible double Poisson...

💬 0 commentsarXiv:2601.14452v1PDF
0

Posted in hep-ph · 2026-01-20 · Igor A. Shovkovy, Ritesh Ghosh

Neutrino production mechanisms in strongly magnetized quark matter: Current status and open questions

We review the main neutrino emission mechanisms operating in dense quark matter under strong magnetic fields, with particular emphasis on conditions expected in the interiors of compact stars. We discuss the direct Urca and neutrino synchrotron processes in unpaired quark matter, incorporating the effects of Landau-level quantization....

💬 0 commentsarXiv:2601.14450v2PDF
0

Posted in hep-ex · 2026-01-20 · Patrycja Potępa

Top-Quark Pair Production in Heavy-Ion Collisions in the ATLAS Experiment

Top-quark pair production in heavy-ion collisions provides a unique opportunity to probe nuclear parton distribution functions and study the time evolution of strongly interacting matter, including the quark-gluon plasma. This work presents the observation and measurement of top-quark pair production in both proton--lead (p+Pb) and...

💬 0 commentsarXiv:2601.14449v1PDF
0

Posted in physics.chem-ph · 2026-01-20 · Yetmgeta Aklilu, Tiany Yang, Cody Covington, Kalman Varga

Quantum-Electrodynamical Time-Dependent Density Functional Theory Description of Molecules Interacting with Light

We study light-mediated interactions between spatially separated molecules using real-time quantum electrodynamical time-dependent density functional theory based on the Pauli-Fierz Hamiltonian. An ultrashort delta-kick excitation selectively perturbs a single molecule, while a second, distant molecule remains initially unexcited. In...

💬 0 commentsarXiv:2601.14444v1PDF
0

Posted in cond-mat.mes-hall · 2026-01-20 · Karun Gadge, Marco Merboldt, Michael Schüler, Jan Philipp Bange, Wiebke Bennecke, Michael A. Sentef, Marcel Reutzel, Stefan Mathias, Salvatore R. Manmana

A comparative study of perturbative and nonequilibrium Green's function approaches for Floquet sidebands in periodically driven quantum systems

We compare two complementary theoretical approaches to compute and interpret Floquet sidebands in periodically driven quantum materials: a first-order perturbative approach (first-order perturbative Born approximation, PB1) and time-dependent nonequilibrium Green's functions (tdNEGF). Using graphene as a model Dirac system, we...

💬 0 commentsarXiv:2601.14443v1PDF
0

Posted in cond-mat.soft · 2026-01-20 · Thê Hoang Ngoc Minh, Sleeba Varghese, Benjamin Rotenberg

Coupled concentration-charge dynamics in asymmetric 1:1 electrolytes, local transient response and fluctuations

We investigate the coupled dynamics of concentration and charge in asymmetric 1:1 electrolytes, focusing on the interplay between diffusion asymmetry and external electric fields. Using Brownian dynamics simulations and linearized stochastic density functional theory (SDFT), we analyze the transient response of charge and number...

💬 0 commentsarXiv:2601.14442v1PDF
0

Posted in nucl-ex · 2026-01-20 · Ankit Kumar, Tushar Verma, Pankaj Jain, Raj Ganesh Pala, K. P. Rajeev

Experimental Determination of Slow-Neutron Detection Efficiency and Background Discrimination in Mixed Radiation Fields Using Differential CR-39 Track Detectors

Measuring slow neutrons is difficult when the radiation field also contains charged particles and fast neutrons, especially when the radiation composition is not known in advance. In this work, we present a tested method to measure slow neutron fluence using CR-39 solid state nuclear track detectors. Two detectors are used together: a...

💬 0 commentsarXiv:2601.14441v1PDF
0

Posted in cond-mat.str-el · 2026-01-20 · Maria Chatzieleftheriou, Jonas B. Profe, Ying Li, Roser Valentí

Pressure Tuning of Electronic Correlations and Flat Bands in CsCr$_3$Sb$_5$

CsCr$_3$Sb$_5$ is a newly identified strongly correlated kagome superconductor, characterized by non-Fermi-liquid behavior at elevated temperatures and intertwined charge- and spin-density-wave order below $T_{DW}\approx 54$K. Under external pressure, this order is suppressed and a superconducting phase emerges. This phase diagram,...

💬 0 commentsarXiv:2601.14439v1PDF
0

Posted in quant-ph · 2026-01-20 · Hsin-Yi Lin, Huan-Hsin Tseng, Samuel Yen-Chi Chen, Shinjae Yoo

Quantum Super-resolution by Adaptive Non-local Observables

Super-resolution (SR) seeks to reconstruct high-resolution (HR) data from low-resolution (LR) observations. Classical deep learning methods have advanced SR substantially, but require increasingly deeper networks, large datasets, and heavy computation to capture fine-grained correlations. In this work, we present the \emph{first...

💬 0 commentsarXiv:2601.14433v2PDF
0

Posted in astro-ph.IM · 2026-01-20 · Grace Sweetak, Breann Sitarski, Kevin France, Randall McEntaffer, Richard Cartwright

PyISH: Python Integral Field Spectroscopy Simulation for HWO

The Habitable Worlds Observatory (HWO) will be a large ultraviolet/optical/near-infrared space telescope operating at the Sun-Earth Lagrange point L2. HWO was highly recommended by the National Academies` 2020 decadal survey and will be the first telescope designed specifically to search for life on planets orbiting other stars. HWO...

💬 0 commentsarXiv:2601.14432v1PDF
0

Posted in astro-ph.EP · 2026-01-20 · Maximilian Vovk, Peter G. Brown, Denis Vida, Daeyoung Lee, Emma G. Harmos

Inferring Meteoroid Properties with Dynamic Nested Sampling: A Case Study of Orionid and Capricornid Shower Meteors

Accurate estimation of meteoroid bulk density is crucial for assessing spacecraft impact hazards from sub-millimeter to millimeter-sized meteoroids. Previous studies often used manual tuning or optimization methods to fit ablation and fragmentation models to optical meteor data, but subjective choices made physical properties and...

💬 0 commentsarXiv:2601.14426v1PDF
0

Posted in astro-ph.CO · 2026-01-20 · Haley R. Stueber, Adam B. Mantz, Steven W. Allen, Anthony M. Flores, R. Glenn Morris, Abigail Y. Pan, Taweewat Somboonpanyakul, Lindsey E. Bleem, Michael Calzadilla, Benjamin Floyd, Julie Hlavacek-Larrondo, Michael McDonald, Arnab Sarkar

Deep Chandra Observations of the z = 1.16 Relaxed, Cool-core Galaxy Cluster SPT-CL J2215-3537

Galaxy clusters serve as a unique and valuable laboratory for probing cosmological models and understanding astrophysics at the high-mass limit of structure formation. Clusters that are dynamically relaxed are especially useful targets of study because of their morphological and dynamical simplicity. However, at redshifts z > 1, very...

💬 0 commentsarXiv:2601.14425v2PDF
0

Posted in physics.class-ph · 2026-01-20 · Bjoern Malte Schaefer

Visualisation of spherical harmonics in Peirce's quincuncial projection

The spherical harmonics $Y_{\ell m}(θ,\varphi)$ are complex-valued functions on the surface of a sphere, and have found widespread application in physics and astronomy. Every physics students knows them from quantum mechanics and electromagnetic theory, where they form the basis of hydrogen orbitals and of the multipole expansion,...

💬 0 commentsarXiv:2601.17045v1PDF
0

Posted in astro-ph.GA · 2026-01-20 · Jackson H. O'Donnell, Demetrius Y. Williams, Tesla E. Jeltema, William Sheu, Felipe Urcelay, Xiaosheng Huang, Tucker Jones, Karl Glazebrook, Tania M. Barone, Aleksandar Cikota, Fuyan Bian, Christopher J. Storfer, Daniel J. Ballard, Gabriel Caminha, Glenn G. Kacprzak, Themiya Nanayakkara, Nandini Sahu, Hannah Skobe, Anowar J. Shajib, Sherry Suyu, Kim-Vy Tran, Keerthi Vasan G. C.

The Carousel Lens I: A Spectroscopic Survey of the Carousel Lens Field

We present a spectroscopic survey of field galaxies and lensed sources in the vicinity of the strong lensing galaxy cluster known as the Carousel lens at z=0.49. Using both Gemini/GMOS slitmask spectra and deep VLT/MUSE observations, we bring the total number of lensed sources up to 13, including three which were not previously known...

💬 0 commentsarXiv:2601.14422v2PDF
0

Posted in hep-th · 2026-01-20 · Jay Armas, Akash Jain

Thermodynamics of ideal spin fluids and pseudo-gauge ambiguity

Conserved currents of relativistic spin fluids derived from microscopic models are known to violate local thermodynamic relations. We present a systematic analysis of pseudo-gauge improvements in ideal spin hydrodynamics and identify a family of pseudo-gauges where standard thermodynamic relations are satisfied. We quantify...

💬 0 commentsarXiv:2601.14421v2PDF
0

Posted in astro-ph.GA · 2026-01-20 · Shouvik Ghosh, Sandeep Kumar Kataria

The Role of Inner Halo Angular Momentum (Spin) in Shaping Dark Matter Bars in Milky Way Analogs

Studies of galactic bars have primarily focused on stellar bars, since they can be directly observed through ultraviolet to infrared wavebands. Cosmological as well as idealised simulations reveal that the dark matter (DM) haloes interact with baryonic matter, primarily the stellar bars, dynamically by means of the exchange of angular...

💬 0 commentsarXiv:2601.14420v2PDF
0

Posted in hep-th · 2026-01-20 · Matheus Curado Ferreira, F. T. Falciano, Guilherme L. Pimentel

Amplifying the Cosmological Collider with Ghost Spectators

Ghost inflation is a well-known framework in which cosmological fluctuations can generate enhanced primordial non-Gaussianity, typically of the equilateral type. In its original form, however, it is in tension with current observational constraints. Here we instead consider a setup in which a standard inflaton drives the background...

💬 0 commentsarXiv:2601.14413v2PDF
0

Posted in hep-ph · 2026-01-20 · Xiao Wang, Csaba Balázs, Ran Ding, Chi Tian

How large are curvature perturbations from slow first-order phase transitions? A gauge-invariant analysis

When strongly supercooled cosmological first-order phase transitions (FOPTs) are sufficiently slow, super-horizon inhomogeneities can be generated. We compute these super-horizon curvature perturbations by employing a gauge-invariant, multi-fluid formalism. By resolving the gauge ambiguities inherent in conventional separate-universe...

💬 0 commentsarXiv:2601.14412v2PDF
0

Posted in quant-ph · 2026-01-20 · Debanjan Roy, Tathagata Gupta, Pratik Ghosal, Samrat Sen, Somshubhro Bandyopadhyay

Quantum state exclusion with many copies

Quantum state exclusion is the task of identifying at least one state from a known set that was not used in the preparation of a quantum system. A set of quantum states is said to admit state exclusion if there exists a measurement whose outcomes can be put in one-to-one correspondence with the states in the set, such that each...

💬 0 commentsarXiv:2601.14410v2PDF
0

Posted in astro-ph.GA · 2026-01-20 · Thomas Tomlinson, Francesca Fragkoudi, Andreia Carrillo, Azadeh Fattahi, Paula Gherghinescu, Alis Deason, Rüdiger Pakmor, Robert J. J. Grand, Facundo A. Gómez, Freeke van de Voort, Rebekka Bieri

Stirring Things Up: Bar-induced substructures in the stellar halo of a cosmological Milky Way analogue

The stellar halo of the Milky Way contains the remnants of past accretion events, which could be detectable as substructures in the classical integrals of motion space, such as energy and angular momentum (E-Lz). However, our galaxy also contains a non-axisymmetric stellar bar, which traps stars in resonant orbits, leading to...

💬 0 commentsarXiv:2601.14409v1PDF
0

Posted in astro-ph.HE · 2026-01-20 · Pau Amaro Seoane

Erythrohenosis -- The crimson chronicles of two giants

We investigate erythrohenosis -- the collision and merger of two red giants -- establishing an end-to-end model for this fundamental evolutionary channel in dense stellar environments. Combining three-dimensional SPH simulations of a binary with analytical modeling, we characterize the event from initial encounter to terminal...

💬 0 commentsarXiv:2601.14408v1PDF
0

Posted in hep-th · 2026-01-20 · Zachary G. Craig

Orbital Structure of 6-Point MHV Gravity Forms

We search for a logarithmic 3-form representing the 6-point MHV gravity amplitude, requiring poles only on physical channels and residues matching factorization. Working in the Orlik-Solomon algebra on a De Concini-Procesi wonderful model, we restrict to the S3 x S3 invariant subspace and impose factorization boundary-by-boundary. The...

💬 0 commentsarXiv:2601.14407v1PDF
0

Posted in hep-ph · 2026-01-20 · Christoph Englert, Wrishik Naskar, Andrew D. Pilkington, Michael Spannowsky

Weak boson probes of Higgs unitarity restoration at 10 TeV parton colliders

Higgs coupling deviations, at levels accessible to the high-luminosity LHC, can imply a phenomenological no-lose theorem for the next generation of collider facilities. Correlating Higgs coupling deviations from the SM expectation in the gauge boson sector with high-scale unitarity requirements, we estimate and compare the sensitivity...

💬 0 commentsarXiv:2601.14404v1PDF
0

Posted in astro-ph.SR · 2026-01-20 · Johanna Müller-Horn, Varsha Ramachandran, Kareem El-Badry, Andreas A. C. Sander, Julia Bodensteiner, Douglas R. Gies, Ylva Götberg, Thomas Rivinius, Tomer Shenar, Elisa C. Schösser, Luqian Wang, Allyson Bieryla, Lars A. Buchhave, David W. Latham

Ultraviolet spectroscopy reveals a hot and luminous companion to the Be star+black hole candidate MWC 656

The Galactic Be star binary MWC 656 was long considered the only known Be star+black hole (BH) system, making it a critical benchmark for models of massive binary evolution and for the expected X-ray emission of Be+BH binaries. However, recent dynamical measurements cast doubt on the presence of a BH companion. We present new...

💬 0 commentsarXiv:2601.14403v2PDF
0

Posted in quant-ph · 2026-01-20 · Rafael Gómez-Lurbe, Armando Pérez

Pauli Propagation for Imaginary-Time Evolution

We extend the Pauli Propagation framework to simulate imaginary-time evolution. By deriving explicit update rules for the propagation of Pauli operators under imaginary-time evolution generated by Pauli strings, we introduce an imaginary-time Pauli Propagation (ITPP) algorithm for approximating imaginary-time dynamics directly in the...

💬 0 commentsarXiv:2601.14400v2PDF