COLD-CI provides 123,736 vector polygons labeling cocoa (1,788 km²) and background (4,208 km²) areas in Cote d'Ivoire with 99% independent validation accuracy.
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De- sign and operation of FACT-the first G-APD Cherenkov telescope
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Cherenkov and scintillation light were separated in BGO and BSO crystals with SiPMs, yielding up to 150 photoelectrons per GeV from Cherenkov light in electromagnetic showers.
Differential cross-sections and their ratio for t-channel single top production are measured at parton level with 140 fb^{-1} of ATLAS data and interpreted in an EFT framework to bound the Wilson coefficient C^{3,1}_{Qq}.
DelAnyFlow combines a YOLOv11 model trained on the FBIS 22M dataset with post-processing to generate accurate vector field boundaries from multi-resolution satellite imagery, enabling country-scale mapping in hours.
Simulated annealing with seasonal sliced Wasserstein distance selects climate year subsets that are 2.5-3.5 times more representative than ENTSO-E practice and achieve 4-5 times effective sample size.
AstroPix-v3 sensors reach 68% hit efficiency in test beams and distinguish electromagnetic from hadronic showers via hit multiplicity and spatial spread when combined with a Pb/SciFi calorimeter.
A four-plate symmetric corrugated structure suppresses quadrupole wakefields in FEL dechirpers, yielding lower projected emittance growth and 25% shorter length than planar designs per simulations.
Methanol acts as both solvent and catalyst in a room-temperature synthesis of Te-diol compounds that yield optically transparent and long-term stable Te-loaded liquid scintillators with 20.1 m attenuation length at 1% loading.
Affinity-propagation clustering of Arctic VHSR imagery enables MAE pretraining of a ViT-Large encoder that outperforms ImageNet and Prithvi-EO-2.0 baselines by 5-15 percentage points in mean F1 on four downstream Arctic detection and segmentation tasks.
PINN framework reconstructs 3D magnetic fields to 10^{-4} simulated accuracy and 10^{-3} experimental accuracy by enforcing divergence-free and curl-free conditions.
The RD50-MPW4 DMAPS shows 100% charge collection efficiency, 226 μm depletion depth, and peripheral charge sharing when mapped in 3D with TPA-TCT.
Simulations indicate that placing a short stack of thin cylindrical electrodes behind the extraction RF carpet in FAIR's cryogenic stopping cells can achieve 100% ion transmission and world-record emittance values across a wide mass range.
New cross sections for natC(n,p) and natC(n,d) up to 25 MeV are higher than evaluations and agree with TALYS-2.0 after model-assisted corrections for excited states.
LHCb reports first searches and the most stringent limits to date on rare decays such as b to s tau+ tau- and tau to three muons.
SGED-TCD is a lag-resolved causal discovery framework that uses structural gating and perturbation-effect alignment to infer interpretable weighted causal networks from complex time series, shown on heat-pollution extremes in China.
An algorithm using multiple harmonics and total variation regularization estimates actual phase steps to suppress Moiré artifacts in attenuation, differential-phase, and dark-field images from Talbot-Lau and modulated phase grating interferometers.
An equivalent rectangular gain layer representation yields a first-order bias-compensation relation that reconstructs multi-temperature LGAD gain curves from a single reference curve and extends the same decomposition to time-resolution components.
Proposes the Trinity air-shower imaging system for detecting ultrahigh energy tau neutrinos between 10^7 and 10^10 GeV to address IceCube neutrino sources, UHECR origins, and high-energy neutrino physics.
LF-MightyPix is a 3.5 mm × 4.0 mm chip with 100 μm pixels that records time-of-arrival and time-over-threshold per hit; test results confirm compatibility with MightyPix requirements for 40 MHz bunch-crossing identification.
Graph neural network achieves AUC of 0.883 for up versus anti-up quark jet charge discrimination in controlled QCD simulations.
Convolutional neural networks classify 12C+12C TPC events at 90-97% accuracy and reconstruct vertices.
Numerical scans in the minimal scotogenic model indicate that approximate neutrino texture structures emerge dynamically from dark matter and lepton flavor violation consistency conditions.
HPES is a planned 1.6 GeV proton beam station at CSNS with flux control from 10^3 to 10^8 protons/s, equipped with flux/profile monitors, a 10 μm resolution telescope, and a 1% energy resolution TOF spectrometer.
Prototype optical TPC assembled and tested for characterization of drift, amplification, and alpha track imaging in Ar/CF4 to guide full system for SARAF neutron studies.
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