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ShaneLogic
Profil créateur GitHub

ShaneLogic

Vue par dépôt de 276 skills collectés dans 1 dépôts GitHub.

skills collectés
276
dépôts
1
mis à jour
2026-03-20
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Principaux dépôts par nombre de skills collectés, avec leur part dans ce catalogue créateur et leur couverture métier.

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Dépôts et skills représentatifs

3d-lattice-tunneling
Physiciens

Calculate electron transmission probability through planar barriers in 3D crystals by applying momentum conservation principles. Use when analyzing tunneling in three-dimensional lattices, when perpendicular momentum conservation must be accounted for, or when converting 1D tunneling results to 3D scenarios involving crystal structures.

2026-03-20
a-si-h-alloying-band-gap-tuning
Scientifiques des matériaux

Tune the optical band gap of hydrogenated amorphous silicon (a-Si:H) through alloying with germanium, carbon, oxygen, or nitrogen. Use this skill when designing solar cell layers that require specific band gap values, such as high-bandgap p-layers or optimized absorption i-layers, or when adjusting the spectral response of a-Si:H-based photovoltaic devices.

2026-03-20
academic-citation-formatting
Rédacteurs techniques

Format academic citations for journal articles, books, conference proceedings, and other scientific references according to standard bibliographic conventions used in physics and materials science literature

2026-03-20
acoustic-phonon-scattering-mobility
Scientifiques des matériaux

Calculate electron mobility limited by acoustic phonon scattering in direct bandgap semiconductors and determine directional elastic constants. Use when analyzing temperature-dependent mobility, phonon scattering effects, or elastic properties in specific crystallographic directions.

2026-03-20
advanced-deposition-techniques
Ingénieurs des matériaux

Select and execute high-rate deposition techniques (VHF-PECVD, HWCVD, MW-CVD) for nanocrystalline silicon growth when standard RF-PECVD rates are insufficient or improved material properties are required. Use when deposition rates >10 Å/s are needed, when reducing hydrogen content is critical, or when improving stability against light-induced degradation is a priority.

2026-03-20
advanced-transport-modeling
Scientifiques des matériaux

Configure and apply advanced transport model features including quasi-Fermi level input handling and steric effects in ion transport. Use when modeling high ion vacancy densities, enabling non-Boltzmann statistics, or setting flexible doping parameters for transport layers.

2026-03-20
amorphous-silicon-characterization
Scientifiques des matériaux

Determine optical band gap and band tail characteristics in amorphous silicon and its alloys using Tauc plot, E04 method, and mobility edge analysis. Use when characterizing a-Si:H materials, analyzing Urbach tails, or determining electronic structure parameters for amorphous semiconductor devices.

2026-03-20
amorphous-silicon-pin-cell-design
Ingénieurs électriques

Design high-efficiency hydrogenated amorphous silicon (a-Si:H) solar cells using pin photodiode structure with optimized layer dimensions and PECVD deposition parameters. Use when designing a-Si:H solar cells, determining layer thickness for amorphous silicon devices, or configuring PECVD process parameters for a-Si:H deposition.

2026-03-20
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