A cavity-enhanced system encodes qubits in polarization of intracavity modes and uses polarization-selective nonlinearities to implement universal gates, with scaling analysis indicating feasible conditional phases in small cavities using accessible materials.
Free - electron lasing with compact beam - driven plasma wakefield accelerator
8 Pith papers cite this work. Polarity classification is still indexing.
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cond-mat.mtrl-sci 1 cs.CV 1 cs.LG 1 cs.MA 1 cs.RO 1 physics.acc-ph 1 physics.plasm-ph 1 quant-ph 1verdicts
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A graph-based technique splits ambiguous instances into multiple points in DR projections to reduce partial neighborhood embedding and reveal hidden memberships.
Specialist agents in an autonomous research loop with lineage feedback improve ML training recipes, delivering 0.81% better validation bpb on Parameter Golf, 38.7% higher CORE on NanoChat-D12, and 4.59% lower wallclock on CIFAR-10 Airbench96 across 1797 trials with no human intervention after setup.
Chiral ZnIn2S4 achieves record acetic acid yield from photocatalytic CO2 reduction via chirality-induced spin polarization stabilizing the OCCO intermediate and facet-specific S-site activity.
A closed-loop sim-to-real RL policy trained in a simplified frictionless simulator achieves sub-millimeter microfiber shape control on physical hardware via visual feedback without retraining.
Fine-tuned MedGemma outperforms untuned GPT-4 in zero-shot medical image disease classification, achieving 80.37% versus 69.58% mean test accuracy with higher sensitivity for cancer and pneumonia.
Pre-bunched beams in THz FELs produce stronger harmonics than Gaussian or other profiles, with planar undulators showing more side lobes than helical ones.
Lasers influence alpha decay, proton radioactivity, and nuclear excitations in isotopes such as 229Th, 83Kr, and 45Sc through methods including the time-dependent Schrödinger equation and Fermi's golden rule.
citing papers explorer
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Cavity-Enhanced Collective Quantum Processing with Polarization-Encoded Qubits
A cavity-enhanced system encodes qubits in polarization of intracavity modes and uses polarization-selective nonlinearities to implement universal gates, with scaling analysis indicating feasible conditional phases in small cavities using accessible materials.
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When One Point Is Not Enough: Addressing Ambiguous Instances in Dimensionality Reduction by Splitting
A graph-based technique splits ambiguous instances into multiple points in DR projections to reduce partial neighborhood embedding and reveal hidden memberships.
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Auto Research with Specialist Agents Develops Effective and Non-Trivial Training Recipes
Specialist agents in an autonomous research loop with lineage feedback improve ML training recipes, delivering 0.81% better validation bpb on Parameter Golf, 38.7% higher CORE on NanoChat-D12, and 4.59% lower wallclock on CIFAR-10 Airbench96 across 1797 trials with no human intervention after setup.
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Spin-polarized chiral ZnIn2S4 for targeted solar-driven CO2 reduction to acetic acid
Chiral ZnIn2S4 achieves record acetic acid yield from photocatalytic CO2 reduction via chirality-induced spin polarization stabilizing the OCCO intermediate and facet-specific S-site activity.
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Closed-Loop Sim-to-Real Reinforcement Learning for Deformable Microfiber Shape Control
A closed-loop sim-to-real RL policy trained in a simplified frictionless simulator achieves sub-millimeter microfiber shape control on physical hardware via visual feedback without retraining.
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MedGemma vs GPT-4: Open-Source and Proprietary Zero-shot Medical Disease Classification from Images
Fine-tuned MedGemma outperforms untuned GPT-4 in zero-shot medical image disease classification, achieving 80.37% versus 69.58% mean test accuracy with higher sensitivity for cancer and pneumonia.
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Enhanced Harmonic Generation in Terahertz FELs: Influence of Pre-Bunching and Undulator Geometry on Spectral and Angular Emission
Pre-bunched beams in THz FELs produce stronger harmonics than Gaussian or other profiles, with planar undulators showing more side lobes than helical ones.
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Advances in laser-assisted nuclear decay and nuclear excitation
Lasers influence alpha decay, proton radioactivity, and nuclear excitations in isotopes such as 229Th, 83Kr, and 45Sc through methods including the time-dependent Schrödinger equation and Fermi's golden rule.