Seyedeh Fahimeh Banihashemian Data-verified
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Researcher
faculty
Research Areas
Biography and Research Information
OverviewAI-generated summary
Seyedeh Fahimeh Banihashemian's research focuses on the development and characterization of semiconductor materials and devices, particularly for applications in solar energy and photonic components. Her work includes the investigation of ternary alloys, such as CySi1-x-ySnx, for the creation of low-cost, high-efficiency multi-junction solar cells. She has also studied polarization mode dispersion in CMOS-integrated silicon photonic components, examining both simulation and experimental aspects. Banihashemian's publications explore designs for high-power micro-ring modulators and multi-channel coupled ring resonators for WDM systems, often conducted on monolithic foundry platforms. She has collaborated with researchers including Aboozar Mosleh and Hameed A. Naseem at the University of Arkansas at Fayetteville on several shared publications.
Metrics
- h-index: 3
- Publications: 11
- Citations: 47
Selected Publications
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High-Efficiency Triple-Junction Solar Cell Design using C<sub>y</sub>Si<sub>1-x-y</sub>Sn<sub>x</sub> Alloys on Low-Cost substrates (2025)
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Growth of CySi<sub>1-x-y</sub>Sn<sub>x</sub> Alloys for Low-Cost High-Efficiency Multi-Junction Solar Cells (2024)
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Ternary C<sub>y</sub>Si<sub>1-x-y</sub>Sn<sub>x</sub> Alloys for Low-Cost High-Efficiency Multi-Junction Solar Cells (2021)
Collaboration Network
Top Collaborators
- Ternary C<sub>y</sub>Si<sub>1-x-y</sub>Sn<sub>x</sub> Alloys for Low-Cost High-Efficiency Multi-Junction Solar Cells
- Growth of CySi<sub>1-x-y</sub>Sn<sub>x</sub> Alloys for Low-Cost High-Efficiency Multi-Junction Solar Cells
- High-Efficiency Triple-Junction Solar Cell Design using C<sub>y</sub>Si<sub>1-x-y</sub>Sn<sub>x</sub> Alloys on Low-Cost substrates
- Ternary C<sub>y</sub>Si<sub>1-x-y</sub>Sn<sub>x</sub> Alloys for Low-Cost High-Efficiency Multi-Junction Solar Cells
- Growth of CySi<sub>1-x-y</sub>Sn<sub>x</sub> Alloys for Low-Cost High-Efficiency Multi-Junction Solar Cells
- High-Efficiency Triple-Junction Solar Cell Design using C<sub>y</sub>Si<sub>1-x-y</sub>Sn<sub>x</sub> Alloys on Low-Cost substrates
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- High-Power Micro-Ring Modulator and Multi-Channel Coupled Ring Resonator for WDM Design on a 300-mm Monolithic Foundry Platform
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
- Polarization mode dispersion in CMOS-integrated monolithic SiPh components: simulations and experiments
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