{"id":18497495,"url":"https://github.com/jungstershark/sclc-modelling","last_synced_at":"2025-05-14T05:14:03.863Z","repository":{"id":228076944,"uuid":"769863967","full_name":"Jungstershark/SCLC-Modelling","owner":"Jungstershark","description":"SCLC-Modelling is a Python project that simulates the transition from field emission to space-charge-limited current (SCLC) in semiconductors. Using models based on the Fowler-Nordheim and Child-Langmuir laws, this repository provides insights into electron emission behaviors, applicable in both research and practical semiconductor design.","archived":false,"fork":false,"pushed_at":"2024-08-29T06:41:31.000Z","size":3571,"stargazers_count":0,"open_issues_count":0,"forks_count":0,"subscribers_count":1,"default_branch":"main","last_synced_at":"2024-12-25T17:41:12.479Z","etag":null,"topics":["electron-emission","modelling","python","python3","research","semiconductor","semiconductor-physics","semiconductors","thermionic-emission"],"latest_commit_sha":null,"homepage":"https://github.com/Jungstershark/SCLC-Modelling","language":"Python","has_issues":true,"has_wiki":null,"has_pages":null,"mirror_url":null,"source_name":null,"license":"apache-2.0","status":null,"scm":"git","pull_requests_enabled":true,"icon_url":"https://github.com/Jungstershark.png","metadata":{"files":{"readme":"README.md","changelog":null,"contributing":null,"funding":null,"license":"LICENSE","code_of_conduct":null,"threat_model":null,"audit":null,"citation":null,"codeowners":null,"security":null,"support":null,"governance":null,"roadmap":null,"authors":null,"dei":null,"publiccode":null,"codemeta":null}},"created_at":"2024-03-10T09:30:15.000Z","updated_at":"2024-08-29T06:45:02.000Z","dependencies_parsed_at":"2024-03-17T01:34:54.698Z","dependency_job_id":"6f17583e-2521-48c3-9b64-0b4ad25312ed","html_url":"https://github.com/Jungstershark/SCLC-Modelling","commit_stats":null,"previous_names":["jungstershark/sclc-modelling"],"tags_count":0,"template":false,"template_full_name":null,"repository_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/Jungstershark%2FSCLC-Modelling","tags_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/Jungstershark%2FSCLC-Modelling/tags","releases_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/Jungstershark%2FSCLC-Modelling/releases","manifests_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/Jungstershark%2FSCLC-Modelling/manifests","owner_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/owners/Jungstershark","download_url":"https://codeload.github.com/Jungstershark/SCLC-Modelling/tar.gz/refs/heads/main","host":{"name":"GitHub","url":"https://github.com","kind":"github","repositories_count":239213504,"owners_count":19600995,"icon_url":"https://github.com/github.png","version":null,"created_at":"2022-05-30T11:31:42.601Z","updated_at":"2022-07-04T15:15:14.044Z","host_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub","repositories_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories","repository_names_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repository_names","owners_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/owners"}},"keywords":["electron-emission","modelling","python","python3","research","semiconductor","semiconductor-physics","semiconductors","thermionic-emission"],"created_at":"2024-11-06T13:34:45.295Z","updated_at":"2025-02-17T00:19:50.012Z","avatar_url":"https://github.com/Jungstershark.png","language":"Python","funding_links":[],"categories":[],"sub_categories":[],"readme":"# MODELLING SPACE-CHARGE-LIMITED CURRENT (SCLC) IN SEMICONDUCTORS\n\n[![Jungstershark - SCLC-Modelling](https://img.shields.io/static/v1?label=Jungstershark\u0026message=SCLC-Modelling\u0026color=blue\u0026logo=github)](https://github.com/Jungstershark/SCLC-Modelling \"Go to GitHub repo\")\n[![stars - SCLC-Modelling](https://img.shields.io/github/stars/Jungstershark/SCLC-Modelling?style=social)](https://github.com/Jungstershark/SCLC-Modelling)\n[![forks - SCLC-Modelling](https://img.shields.io/github/forks/Jungstershark/SCLC-Modelling?style=social)](https://github.com/Jungstershark/SCLC-Modelling)\n[![License](https://img.shields.io/badge/license-Apache%202.0-blue.svg)](LICENSE)\n\n## Overview\n\nThis repository contains the code and results for modeling the transition from field emission to space-charge-limited current (SCLC) in semiconductors. The study explores the behavior of current conduction under varying electron emission conditions, based on the Fowler-Nordheim and Child-Langmuir laws.\n\n## Project Background\n\nThe research investigates how current conduction transitions from field emission to SCLC, which is crucial for applications in both low-current devices (like EMP-resilient electronics) and high-current industrial systems. The models account for both collision and non-collision scenarios, providing valuable insights for semiconductor design.\n\n## Key Models\n\n- *JV-model.py:* Simulates J-V characteristics under different emission conditions.\n- *lau-model.py:* Models SCLC using Fowler-Nordheim and Child-Langmuir laws.\n- *thermionic-v2.py:* Focuses on thermionic emission processes.\n\n## How to Use\n\n### Prerequisites\n\nInstall the required libraries:\n```bash\npip install -r requirements.txt\n```\n\n### Running the Scripts\n\n- *JV-model.py:* Run with python JV-model.py to generate J-V plots.\n- *lau-model.py:* Execute with python lau-model.py for log-log J(E) vs. V(E) plots.\n- *thermionic-v2.py:* Run python thermionic-v2.py for thermionic emission analysis.\n\n## Future Work\n\nPlans include refining the models for broader applications and incorporating more complex emission surfaces.\n\n## Poster\n\u003cdiv align=\"center\"\u003e\n    \u003cimg src=\"/Poster.png\" alt=\"Poster\" width=\"600\" height=\"800\"\u003e\n\u003c/div\u003e\n","project_url":"https://awesome.ecosyste.ms/api/v1/projects/github.com%2Fjungstershark%2Fsclc-modelling","html_url":"https://awesome.ecosyste.ms/projects/github.com%2Fjungstershark%2Fsclc-modelling","lists_url":"https://awesome.ecosyste.ms/api/v1/projects/github.com%2Fjungstershark%2Fsclc-modelling/lists"}