Research paperComputationalMid-IR Metalens Based on MoS₂ NanopillarsMuhammad Mahmudul Hasan, Nezih Pala2025·10.48550/arxiv.2412.03914·arXiv:2412.03914AbstractThis paper proposes a mid-infrared metalens designed to work at 3.3 μm using MoS₂ nanopillars as high-refractive-index, low-loss metasurface elements for compact optical methane gas sensing.Read more
Designed mid-IR metalens unit-cell and full-lens simulation comprising MoS₂ cylindrical nanopillars on a transparent SiO₂ substrate.5 propertiesSimulatedMoS₂Studied MaterialSiO₂Substrate / DielectricExpand
Research paperComputationalMid-IR Metalens Based on MoS₂ NanopillarsMuhammad Mahmudul Hasan, Nezih Pala2025·10.48550/arxiv.2412.03914·arXiv:2412.03914AbstractThis paper proposes a mid-infrared metalens designed to work at 3.3 μm using MoS₂ nanopillars as high-refractive-index, low-loss metasurface elements for compact optical methane gas sensing.Read more
Designed mid-IR metalens unit-cell and full-lens simulation comprising MoS₂ cylindrical nanopillars on a transparent SiO₂ substrate.5 propertiesSimulatedMoS₂Studied MaterialSiO₂Substrate / DielectricExpand
Research paperComputationalMid-IR Metalens Based on MoS₂ NanopillarsMuhammad Mahmudul Hasan, Nezih Pala2025·10.48550/arxiv.2412.03914·arXiv:2412.03914AbstractThis paper proposes a mid-infrared metalens designed to work at 3.3 μm using MoS₂ nanopillars as high-refractive-index, low-loss metasurface elements for compact optical methane gas sensing.Read more
Designed mid-IR metalens unit-cell and full-lens simulation comprising MoS₂ cylindrical nanopillars on a transparent SiO₂ substrate.5 propertiesSimulatedMoS₂Studied MaterialSiO₂Substrate / DielectricExpand
Research paperComputationalMid-IR Metalens Based on MoS₂ NanopillarsMuhammad Mahmudul Hasan, Nezih Pala2025·10.48550/arxiv.2412.03914·arXiv:2412.03914AbstractThis paper proposes a mid-infrared metalens designed to work at 3.3 μm using MoS₂ nanopillars as high-refractive-index, low-loss metasurface elements for compact optical methane gas sensing.Read more
Designed mid-IR metalens unit-cell and full-lens simulation comprising MoS₂ cylindrical nanopillars on a transparent SiO₂ substrate.5 propertiesSimulatedMoS₂Studied MaterialSiO₂Substrate / DielectricExpand