Preprint: RL-Trotter had lower reported errors in numerical quantum tests
In computer benchmarks, the reinforcement-learning policy had lower reported errors than conventional and adaptive baselines; quantum-hardware performance was not validated.
1861–1880
In computer benchmarks, the reinforcement-learning policy had lower reported errors than conventional and adaptive baselines; quantum-hardware performance was not validated.
Simulations suggest that changing the focus velocity could produce parabolic or conical near-field patterns, but no experiment is reported.
Galactic masking alone left a strong mismatch, but combining it with empirical survey-selection maps brought the observed profile into line with isotropic mock skies—while leaving a key modeling caveat.
The framework measures the volume of pure states compatible with a preparation, but broader entropy properties remain unresolved.
The system combines vision-language guidance with low-level visual priors and reports an average 31.00 dB PSNR and 0.923 SSIM in its expanded comparison.
A theorem-based analysis also maps where entropy values can accumulate and identifies the geometry behind the largest value below 1.
The framework reported better cache hit ratio and throughput with feedback incentives, while two unreconciled resource-cost summaries complicate the efficiency picture.
Calculations point to form factors, two-photon exchange and virtual Compton scattering, but the work remains a proposal rather than an experimental result.
The preprint reports different leading encoder geometries for partial and full recovery in displayed dimension-three comparisons.
The same unchanged architecture reached 87.33% accuracy on pelvic X-rays, but both evaluations used small public datasets and five-fold cross-validation.
Jitter was consistently 1 microsecond on an RP2040 but reached about 905 microseconds on AMD Linux, while three simulated circuits matched analytical timing predictions.
IZM-DSR recorded 31.4 dB PSNR versus 30.5 for SMR and 29.8 for DSR, but exact delivery and delay values were not stated.
In a computational Lindblad model, pattern order remained after two tested Gaussian covariance checks crossed zero, suggesting that morphology and covariance-based nonclassicality fade at different noise scales.
In a 175-instance test of theoretical computer science, Claude Opus-5 scored 68.7 on proof-strategy generation but 11.5 on theorem formalization.
Exact simulations link an intermediate interaction regime with stronger memory, sensing response and nonlinear processing—but only within one modeled circuit family.
A conformal-boundary calculation matched return, local and spatial signals in finite-size quantum-chain models, but its broader reach remains untested.
G3Ego uses sparse frames, hand and object cues and gaze-based pruning on two video benchmarks; the study does not test human attention or behavior.
The reduced formulation adds particle, electrode and cell-scale mechanics to a DFN battery model, with the largest simulated correction under clamped conditions.
The orbit-equivalent construction preserves freeness and reaches weak mixing for every nontrivial element, but leaves ordinary mixing unresolved.
An analytical model finds that a split ground-state density can coexist with no net polarization and proposes a damped soft-mode signal.