The Need for Speed: Efficient Exact Simulation of Silicon Dangling Bond Logic

2024 29th Asia and South Pacific Design Automation Conference (ASP-DAC)(2023)

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摘要
The Silicon Dangling Bond (SiDB) logic platform, an emerging computational beyond-CMOS nanotechnology, is a promising competitor due to its ability to achieve integration density and clock speed values that are several orders of magnitude higher compared to current CMOS fabrication nodes. However, the exact physical simulation of SiDB layouts, which is an essential component of any design validation workflow, is computationally expensive. In this paper, we propose a novel algorithm called QuickExact, which aims to be both, efficient and exact. To this end, we are introducing three techniques, namely 1) Physically-informed Search Space Pruning, 2) Partial Solution Caching, and 3) Effective State Enumeration. Extensive experimental evaluations confirm that, compared to the state-of-the-art algorithm, the resulting approach leads to a paramount runtime advantage of more than a factor of 5000 on randomly generated layouts and more than a factor of 2000 on an established gate library.
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关键词
Exact Simulation,Dangling Bonds,Search Space,Experimental Evaluation,Caching,Physical Simulation,Extensive Experimental Evaluation,Negatively Charged,Changes In Distribution,Charge Density,Electrostatic Potential,Lowest Energy,State Of Charge,Electrostatic Energy,Fermi Energy,Electron Distribution,Series Of Rates,Exact Algorithm,Total Potential Energy,Gray Code,Runtime Efficiency
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