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Preprints

Filtering by Subject: Physical Sciences and Mathematics

Reactive halogens drive rapid mercury oxidation in hot volcanic emission-plumes

Alexander Nies, Jonas Kuhn, Bastien Geil, et al.

Published: 2026-09-09
Subjects: Physical Sciences and Mathematics

Volcanoes release mercury (Hg) alongside gases and particles through continuous passive degassing and by explosive and effusive eruptions. The global dispersion and environmental impact depend on volcanic Hg oxidation state, which remains poorly constrained: thermochemical calculations of magmatic gas composition and crater-rim sampling indicate Hg to be predominantly in the reduced Hg0 form that [...]

Dendrochronology and the date of the Thera volcanic eruption

Pierce James Furlong

Published: 2026-09-07
Subjects: Earth Sciences, Glaciology, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics, Sedimentology, Volcanology

The main disciplines that contribute to our understanding of the chronology of the ancient Near East are history, archaeology, and various scientific dating techniques including dendrochronology, radiocarbon dating, and ice-core analysis. Beginning in the 1980s, a major rift began to develop between the historical-archaeological chronology and that based on dendrochronology-calibrated radiocarbon [...]

A Changing North Atlantic Background Amplifies Western European Heatwaves

Houwen Wang, Fanghe Zhao, Yuhang Wang, et al.

Published: 2026-09-06
Subjects: Atmospheric Sciences, Climate, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

Western European summer heatwaves have increased markedly since the 1990s, culminating in the record warmth of May–July 2026 since 1950. We show that this rise is closely associated with the slowly evolving North Atlantic background. We combine two leading April sea surface temperature modes, representing basin-wide warming and a tripole-like pattern, into an Atlantic Two-Mode Index (ATMI). The [...]

Station spacing bounds the recovery of rainfall extremes by interpolation: an independent-network test with consequences for landslide thresholds

Sunghyun Min

Published: 2026-09-06
Subjects: Physical Sciences and Mathematics

Gridded rainfall products interpolated from gauge networks underpin landslide early warning, and a common view holds that their main deficiency in mountains is the omission of orographic enhancement. This study tests that view using an independent network: 464 mountain stations operated by the Korea Forest Service that do not enter the operational grid of the Korea Meteorological Administration. [...]

A Unified Forearc Subsidence Model Based on the Three-Arc Unjoined Structure of the Honshu Arc

Yoshikazu Hiraoka

Published: 2026-09-06
Subjects: Physical Sciences and Mathematics

This study reinterprets the subsidence, uplift, fault activity, and geomorphic development observed in the Nōbi Plain, Ise Bay, Lake Biwa, Wakasa Bay, and Osaka Bay through a new structural framework in which the Honshu Arc is understood as an incompletely joined system of three arcs. The Southwest Japan Arc (narrow sense), the Hida–Tamba Terrane, and the Northeast Japan Arc approached each other [...]

Systematic Evaluation of a Transformer-Based Surrogate for Distributed Groundwater Dynamics: Long-Horizon Prediction, Dynamic–Static Fusion, and Data Augmentation

Hui Huang, Aoqi Sun, Hoang Tran, et al.

Published: 2026-09-05
Subjects: Engineering, Physical Sciences and Mathematics

Transformers are increasingly reshaping artificial-intelligence-based Earth system prediction, yet their suitability for distributed groundwater surrogate modeling remains poorly understood. Groundwater dynamics combine strong temporal persistence with spatial interactions governed by heterogeneous hydrogeological conditions. These characteristics make attention-based architectures potentially [...]

Earthquakes prime landscapes for typhoon-induced permeability loss

Peter Makus, Nicolas Brantut, Luc Illien, et al.

Published: 2026-09-04
Subjects: Physical Sciences and Mathematics

Bedrock aquifers supply drinking water to half the global population, and earthquakes can disrupt this resource for years by changing their permeability. Previous studies proposed several mechanisms to explain coseismic permeability changes but lacked an observational tool to distinguish them; moreover, all assumed an immediate onset. Here, we analyse groundwater and seismic data from eastern [...]

Isochrone overturning in steady glacier flow

Bradley P Lipovsky

Published: 2026-09-04
Subjects: Earth Sciences, Glaciology, Physical Sciences and Mathematics

Ancient ice recovered at Allan Hills extends into the Miocene, but steep layers, age reversals and folds complicate its interpretation. Whether steady glacier flow can overturn initially ordered layers remains uncertain. Here, we track the horizontal order of particles deposited sequentially at the surface. This order is measured by a signed Jacobian that is equivalent to the inverse [...]

Simulation analysis method of drainage system of tideland paddy zone

Kwang-Min Han, Yong-Gun Kim, Kyungmin Hwang, et al.

Published: 2026-09-03
Subjects: Physical Sciences and Mathematics

The tideland paddy zone drainage system plays an important role in preventing flood damage and protecting the tideland paddy zone by draining the rainwater from the paddy zones and the surrounding catchments in good time. Therefore, scientific design of drainage system and accurate assessment of drainage capacity in tideland paddy zones are important for sustainable development in agricultural [...]

Modelling Winter Atmospheric River Frequency over the Western Himalayas Using Large-Scale Climate Modes Via Statistical Approach

Sheikh Imran Fayaz, Munir Ahmad Nayak, Mohammad Humza Kanth

Published: 2026-09-03
Subjects: Engineering, Physical Sciences and Mathematics

Winter Atmospheric Rivers (ARs) contribute substantially to precipitation in the Western Himalayas, but how large-scale climate modes jointly influence their frequency remains unclear. In this study, we use a statistical method that combines correlation, phase-composite analysis of Integrated Vapor Transport (IVT), and predictive models such as linear regression, Generalized Linear Models (GLMs), [...]

The importance of ice shelf melt rate distributions in modelling of Antarctic ice loss

Jowan Barnes, Hilmar Gudmundsson, Ralph Timmermann

Published: 2026-09-03
Subjects: Environmental Sciences, Glaciology, Oceanography, Physical Sciences and Mathematics

Ocean-induced basal melting of ice shelves is a major cause of Antarctic ice loss. It is well known that the magnitude of this melt is an important factor to consider when modelling the future evolution of the ice sheet, and values of total melt volume or mean melt rates are often quoted for ice shelves. The finer detail of the distribution of this melt is usually given less attention. Here we [...]

Fault roughness as a driver of rupture complexity in fluid-induced microearthquakes

Francesco Mosconi, Elisa Tinti, Alice-Agnes Gabriel, et al.

Published: 2026-09-03
Subjects: Physical Sciences and Mathematics

Subsurface fluid-injection can induce microearthquakes whose rupture complexity and arrest mechanisms remain poorly understood, limiting our ability to assess the seismic hazard associated with geo-energy applications. We investigate how fault roughness modulates the response of fluid-pressurized faults using an ensemble of 1395 3D dynamic rupture simulations on self-similar rough faults, varying [...]

The Elastic Stiffness C13 in Transversely Isotropic Shales

Colin M Sayers

Published: 2026-09-03
Subjects: Earth Sciences, Physical Sciences and Mathematics

Shales are often anisotropic due to fine-scale layering and preferred alignment of clay particles with bedding. They may be approximated as transversely isotropic (TI) media with symmetry axis (x3) perpendicular to bedding. TI media have five independent elastic stiffnesses C11, C33, C55, C66 and C13, with C12 = C11−2C66. While C11, C33, C55 and C66 may be estimated from velocities measured [...]

Airborne Metal Toxin Particulate Signatures and Legacy at Wildland–Urban Interface

Alireza Namayandeh, Charlie Lamb, Frida Daniela Garcia Ledezma, et al.

Published: 2026-09-03
Subjects: Medicine and Health Sciences, Physical Sciences and Mathematics

Wildland–urban interface (WUI) fires burn urban materials together with soil and vegetation, generating air pollution as smoke during active burning and as resuspended dust during recovery. Here, we combine size-resolved sampling of the Eaton Fire (Altadena, CA) with controlled resuspension of materials collected from properties affected by the Eaton and Palisades (Pacific Palisades, CA) fires. [...]

A Framework for Experiential Environmental Health Through Theater

Alireza Namayandeh, Shaghayegh Navabpour, Jonathon Howell, et al.

Published: 2026-09-03
Subjects: Education, Life Sciences, Physical Sciences and Mathematics, Social and Behavioral Sciences

Extreme weather events, including wildfires, are becoming more frequent, intense, and consequential for human health. Scientific advances have improved our ability to characterize hazards and the socioeconomic constraints shaping exposure, but these dimensions are not always integrated throughout the development of environmental health knowledge. Meanwhile, broader publics, although often not [...]

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