Carbon Dimers as the Dominant Feeding Species in Epitaxial Growth and Morphological Phase Transition of Graphene on Different Cu Substrates
PulseAugur coverage of Carbon Dimers as the Dominant Feeding Species in Epitaxial Growth and Morphological Phase Transition of Graphene on Different Cu Substrates — every cluster mentioning Carbon Dimers as the Dominant Feeding Species in Epitaxial Growth and Morphological Phase Transition of Graphene on Different Cu Substrates across labs, papers, and developer communities, ranked by signal.
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Deep-learning QMC method accelerates excited-state potential energy surface calculations
Researchers have developed a novel method for optimizing neural network wave functions, enabling the efficient prediction of ground and excited-state potential energy surfaces (PESs). This approach leverages weight shar…
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Excited Pfaffians: New Neural Network Architecture for Quantum States
Researchers have developed a novel neural network architecture called Excited Pfaffians, designed to more efficiently represent multiple quantum states. This approach significantly reduces computational cost compared to…