EnseSmells fuses code embeddings from pre-trained models with hand-crafted metrics and reports higher F1 and MCC than prior baselines on MLCQ for four code smells.
Logic Gates based on Interaction of Counterpropagating Light in Microresonators
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Optical logic has the potential to replace electronics with photonic circuits in applications for which optic-to-electronic conversion is impractical and for integrated all-optical circuits. Nonlinear optics in whispering gallery mode resonators provides low power, scalable methods to achieve optical logic. We demonstrate, for the first time, an all-optical, universal logic gate using counterpropagating light in which all signals have the same operating optical frequency. Such a device would make possible the routing of optical signals without the need for conversion into the electronic domain, thus reducing latency. The operating principle of the device is based on the Kerr interaction between counter-propagating beams in a whispering gallery mode resonator which induces a splitting between the resonance frequencies for the two propagating directions. Our gate uses a fused silica microrod resonator with a \textit{Q}-factor of $\SI{2e8}{}$. This method of optical logic gives a practical solution to the on-chip routing of light.
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cs.SE 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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EnseSmells: Deep ensemble and programming language models for automated code smells detection
EnseSmells fuses code embeddings from pre-trained models with hand-crafted metrics and reports higher F1 and MCC than prior baselines on MLCQ for four code smells.