Mohammad Alanzi

Physicist with 13 years of hands on experience in R&D in semiconductor physics and photonics

Riyadh

Research Expertise

Condensed Matter Physics
Inorganic Chemistry
Electrical and Electronic Engineering
Electronic, Optical and Magnetic Materials
Atomic and Molecular Physics, and Optics
Photonics
Semiconductor devices

About

Hello! My name is Mohammad and I'm a physicist working in the a government R&D lab since 2011 as a scientist. I have worked and spearheaded several research projects in materials physics, semiconductors and photonics. I have co-authored several peer-reviewed research papers including an independent research project which culminated in a conference paper as a single author. Skilled in scientific research inluding, ideas generation, technology scouting, literature review and technical/scientific writing. When I'm not doing research. I'm an angel-investor in technology startups. I have invested in several energy/biotech startups. This requires additional skills that I have learned over the past few years which include. Startups scouting, market/technology validation and due diligence.

Publications

Optical and structural properties of GaN epitaxial layers on LiAlO2 substrates and their correlation with basal-plane stacking faults

Journal of Crystal Growth / Jan 01, 2016

Lutsenko, E. V., Rzheutski, M. V., Pavlovskii, V. N., Yablonskii, G. P., Alanzi, M., Hamidalddin, A., Alyamani, A., Mauder, C., Kalisch, H., Reuters, B., Heuken, M., Vescan, A., Naresh-Kumar, G., & Trager-Cowan, C. (2016). Optical and structural properties of GaN epitaxial layers on LiAlO2 substrates and their correlation with basal-plane stacking faults. Journal of Crystal Growth, 434, 62–66. https://doi.org/10.1016/j.jcrysgro.2015.10.036

Effect of the Quantum-Well Shape on the Performance of InGaN-Based Light-Emitting Diodes Emitting in the 400–500-nm Range

Journal of Display Technology / Mar 01, 2015

Salhi, A., Alanzi, M., & Alonazi, B. (2015). Effect of the Quantum-Well Shape on the Performance of InGaN-Based Light-Emitting Diodes Emitting in the 400–500-nm Range. Journal of Display Technology, 11(3), 217–222. https://doi.org/10.1109/jdt.2014.2373387

Optically pumped quantum-dot Cd(Zn)Se/ZnSe laser and microchip converter for yellow—green spectral region

Quantum Electronics / May 31, 2013

Lutsenko, E. V., Voinilovich, A. G., Rzheutskii, N. V., Pavlovskii, V. N., Yablonskii, G. P., Sorokin, S. V., Gronin, S. V., Sedova, I. V., Kop’ev, P. S., Ivanov, S. V., Alanzi, M., Hamidalddin, A., & Alyamani, A. (2013). Optically pumped quantum-dot Cd(Zn)Se/ZnSe laser and microchip converter for yellow—green spectral region. Quantum Electronics, 43(5), 418–422. https://doi.org/10.1070/qe2013v043n05abeh015164

Education

Imam Muhammad Ibn Saud Islamic University

BSc, Physics

Riyadh

Experience

King Abdulaziz City for Science and Technology

Research Scientist / July, 2017Present

1- Joined a computational material science research group that conducts atomistic simulations on local High-Performance Computing cluster. 2- Performed, analyzed and summarized validation of atomistic simulations on high-performance computer systems running Linux. 3- Worked on lab preparation which included, preparing a list of needed materials and equipments and discussing requirments and procedures with senior scientists. 4- Various administrative tasks.

Research Assistant / March, 2011July, 2017

1-Operated, maintained lab equipment, including spectroscopic ellipsometry, atomic force microscopy, surface profilometer. 2- Conducted optical and surface characterizations on prepared samples. 3- Performed routine lab equipment calibration and function checks to ensure accuracy. 4- Conducted various experimental techniques including photo-luminescence spectroscopy, low-temperature photo-luminescence spectroscopy. 5- Device modeling of Light-Emitting Diodes (LED) and Laser Diodes (LD) (III-V Nitride) using a commercial software.

Technische Universität Kaiserslautern

Student Research Assistant (Contract) / November, 2018April, 2019

Worked in a quantum optics & quantum gases research group as a student research assistant. my work included simulating nanodiamonds embedded in a waveguide structure for quantum sensing and integrated photonics applications using COMSOL.

Links & Social Media

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