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Modeling and Simulation of Heterojunction Solar Cell with Mono Crystalline Silicon
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作者 Sajid Ullah Ayesha Gulnaz Guangwei Wang 《Journal of Applied Mathematics and Physics》 2024年第3期997-1020,共24页
The monocrystalline silicon is a promising material that could be used in solar cells that convert light into electricity. Although the cost of ordinary silicon (Si) solar cells has decreased significantly over the pa... The monocrystalline silicon is a promising material that could be used in solar cells that convert light into electricity. Although the cost of ordinary silicon (Si) solar cells has decreased significantly over the past two decades, the conversion efficiency of these cells has remained relatively high. While solar cells have a great potential as a device of renewable energy, the high cost they incur per Watt continues to be a significant barrier to their widespread implementation. As a consequence, it is vital to conduct research into alternate materials that may be used in the construction of solar cells. The heterojunction solar cell (HJSC), which is based on n-type zinc oxide (n-ZnO) and p-type silicon (p-Si), is one of the numerous alternatives of the typical Si single homojunction solar cell. There are many deficiencies that can be found in the published research on n-ZnO/p-Si heterojunction solar cell. Inconsistencies in the stated value of open circuit voltage (V<sub>oc</sub>) of the solar cell are one example of deficiency. The absence of a full theoretical study to evaluate the potential of the solar cell structure is another deficiency that can be found in these researches. A lower value of experimentally obtained V<sub>OC</sub> in comparison to the theoretical prediction based on the band-gap between n-ZnO and p-Si. There needs to be more consensus among scientists regarding the optimal conditions for the growth of zinc oxide. Many software’s are available for simulating and optimizing the solar cells based on these parameters. For this purpose, in this dissertation, I provide computational results relevant to n-ZnO/p-Si HJSC to overcome deficiencies that have been identified. While modeling and simulating the potential of the solar cell structure with AFORS-HET, it is essential to consider the constraints that exist in the real world. AFORS-HET was explicitly designed to mimic the multilayer solar cell arrangement. In AFORS-HET, we can add up to seven layers for solar cell layout. By using this software, we can figure out the open circuit voltage (V<sub>OC</sub>), the short circuit current (J<sub>SC</sub>), the quantum efficiency (QE, %), the heterojunction energy band structure, and the power conversion efficiency (PCE). 展开更多
关键词 heterojunction Solar Cell Silicon Monocrystalline DEFICIENCIES AFORS-het OPTIMIZATION Open Circuit Voltage quantum Efficiency
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量子外差精密测量及微弱信号感知技术综述 被引量:1
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作者 关策 张子静 +2 位作者 岑龙柱 王志远 赵远 《计测技术》 2023年第3期91-98,共8页
单光子探测技术和激光外差探测技术是探测微弱光信号的重要手段,通过微弱光信号提取目标多维信息是目前激光感知的重要领域。但是在实际应用中背景噪声以及信号光的退相干,会严重影响单光子探测技术以及外差探测技术对于目标多维信息的... 单光子探测技术和激光外差探测技术是探测微弱光信号的重要手段,通过微弱光信号提取目标多维信息是目前激光感知的重要领域。但是在实际应用中背景噪声以及信号光的退相干,会严重影响单光子探测技术以及外差探测技术对于目标多维信息的感知。在探测微弱光信号时的这些问题通过传统方案很难被有效的解决。量子外差精密测量方法是在单光子探测的基础上结合外差探测的一种新测量方法,可以解决单光子探测探测灵敏度受背景噪声限制的缺点。并且量子外差对本振光强度要求极低,可以有效降低大阵列外差探测对于本振强度的要求。文中进一步总结并分析了量子外差精密测量方法的研究动态。通过现有研究成果的梳理和分析有助于深入理解和把握目前量子外差精密测量方法的研究现状和问题,为量子外差精密测量方法未来发展奠定基础。 展开更多
关键词 多维信息提取 单光子探测 激光外差 量子外差 微多普勒探测
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