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In this tutorial, we break down the process of simulating defect states in semiconductors using Silvaco TCAD. 💻🔬 We focus on how donor-like and acceptor-like states, their energies, and decay characteristics influence the material's behavior. You'll see how we input key parameters like WTA, WTD, NGA, and EGA to predict the type of conductivity — in this case, leading to a p-type material. 💡⚡ This simulation helps to visualize how defects impact charge carriers and how they interact with the conduction and valence bands. 🌟 Simulating real-world material behavior is crucial for designing next-gen electronic devices! 🖥️🔧 In the video, we explore the importance of accurately modeling these defect states for creating better, more efficient semiconductors. 🏅 The energy band diagram will show you how defects contribute to p-type behavior, and we’ll walk you through all the essential steps in setting up and running these simulations on Silvaco TCAD. 🎯🚀 Whether you're a student, researcher, or industry professional, this video will give you the tools to simulate defects effectively and gain deeper insights into semiconductor physics. 🧑🔬🔍 Stay tuned for more tutorials on TCAD simulations and semiconductor modeling! 💥 #SilvacoTCAD #SemiconductorSimulation #DefectsInSemiconductors #TCADSimulation #Electronics #PTypeMaterial #SimulationTutorial #TechTutorial #SemiconductorPhysics #DeviceModeling #Engineering #TechEducation #MaterialsScience #ScienceAndTech #Techie