Reem Alhelais Data-verified
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Biography and Research Information
OverviewAI-generated summary
Reem Alhelais's research focuses on the investigation and modeling of semiconductor materials and devices, with a particular emphasis on solar cell technologies. Her work has explored InAs nanostructures and InGaN materials, examining factors that influence solar cell efficiency, such as quantum dots, graded compositions, and Ohmic contacts. Alhelais has also studied the optical properties of nanofilms, including amorphous carbon and nickel-based composites, investigating both linear and nonlinear characteristics in continuous wave regimes.
Her publications include research on the temperature dependence of graded InGaN solar cells, modeling of strained and relaxed features, and the development of low-resistance Ohmic contacts. She has also investigated the fabrication and optical properties of composite nanofilms containing graphene and nickel. Alhelais has collaborated with several researchers at the University of Arkansas at Fayetteville, including Morgan E. Ware, Md Helal Uddin Maruf, Yuriy I. Mazur, and Rohith Allaparthi, on numerous shared publications. Her scholarship metrics include an h-index of 4, with 12 total publications and 48 total citations.
Metrics
- h-index: 4
- Publications: 12
- Citations: 48
Selected Publications
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Investigating the efficiency of InGaN p-n-p-n homojunction solar cells (2025)
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Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features (2022)
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Low resistance Ohmic contacts to graded InGaN (2022)
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Modeling of Λ-graded InxGa1−xN solar cells: comparison of strained and relaxed features (2022)
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Study of simulations of double graded InGaN solar cell structures (2022)
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Investigation of linear and nonlinear optical properties of amorphous carbon nanofilms prepared by electron beam evaporation (2021)
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The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model (2021)
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Experiment-simulation comparison of luminescence properties of GaN/InGaN/GaN double graded structures (2021)
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Effects of numbers of wells on optical properties of periodic InGaN graded structure (2021)
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InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot (2021)
Collaboration Network
Top Collaborators
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Investigation of linear and nonlinear optical properties of amorphous carbon nanofilms prepared by electron beam evaporation
- The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model
- Study of simulations of double graded InGaN solar cell structures
- Low resistance Ohmic contacts to graded InGaN
Showing 5 of 12 shared publications
- Investigation of linear and nonlinear optical properties of amorphous carbon nanofilms prepared by electron beam evaporation
- The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model
- Study of simulations of double graded InGaN solar cell structures
- Low resistance Ohmic contacts to graded InGaN
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
Showing 5 of 10 shared publications
- Investigation of linear and nonlinear optical properties of amorphous carbon nanofilms prepared by electron beam evaporation
- The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model
- Study of simulations of double graded InGaN solar cell structures
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
- Modeling of Λ-graded InxGa1−xN solar cells: comparison of strained and relaxed features
Showing 5 of 8 shared publications
- Study of simulations of double graded InGaN solar cell structures
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
- Modeling of Λ-graded InxGa1−xN solar cells: comparison of strained and relaxed features
- Effects of numbers of wells on optical properties of periodic InGaN graded structure
- Modeling of V graded In(x)Ga(1-x)N solar cells: comparison of strained and relaxed features
Showing 5 of 6 shared publications
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Study of simulations of double graded InGaN solar cell structures
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
- Experiment-simulation comparison of luminescence properties of GaN/InGaN/GaN double graded structures
- Composite nanofilms of graphene and nickel: Fabrication, cw linear and nonlinear optical properties
- Study of simulations of double graded InGaN solar cell structures
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
- Modeling of Λ-graded InxGa1−xN solar cells: comparison of strained and relaxed features
- Effects of numbers of wells on optical properties of periodic InGaN graded structure
- Modeling of V graded In(x)Ga(1-x)N solar cells: comparison of strained and relaxed features
- Study of simulations of double graded InGaN solar cell structures
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
- Experiment-simulation comparison of luminescence properties of GaN/InGaN/GaN double graded structures
- Modeling of Λ-graded InxGa1−xN solar cells: comparison of strained and relaxed features
- Effects of numbers of wells on optical properties of periodic InGaN graded structure
- Investigation of linear and nonlinear optical properties of amorphous carbon nanofilms prepared by electron beam evaporation
- The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model
- Composite nanofilms of graphene and nickel: Fabrication, cw linear and nonlinear optical properties
- The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model
- Study of simulations of double graded InGaN solar cell structures
- Modeling of temperature dependence of Λ-graded InGaN solar cells for both strained and relaxed features
- Modeling of Λ-graded InxGa1−xN solar cells: comparison of strained and relaxed features
- Modeling of V graded In(x)Ga(1-x)N solar cells: comparison of strained and relaxed features
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Low resistance Ohmic contacts to graded InGaN
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Low resistance Ohmic contacts to graded InGaN
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Low resistance Ohmic contacts to graded InGaN
- Low resistance Ohmic contacts to graded InGaN
- Experiment-simulation comparison of luminescence properties of GaN/InGaN/GaN double graded structures
- Investigation of linear and nonlinear optical properties of amorphous carbon nanofilms prepared by electron beam evaporation
- The nonlinear optical properties of nickel nano-films in the cw regime: Proposed model
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