A computational tool for calculating thermo-field electron emission current density and Nottingham effect heat for metallic and semiconducting emitters
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Updated
Oct 7, 2026 - Python
A computational tool for calculating thermo-field electron emission current density and Nottingham effect heat for metallic and semiconducting emitters
Time-dependent Gaussian wavepacket simulation of resonant tunnelling through a 1D double-barrier system. Python/SciPy.
A high-performance 1D quantum tunneling solver using split-operator Fourier method with absorbing boundary conditions and Numba acceleration for simulating electron tunneling through potential barriers with proper probability conservation.
Interactive quantum tunneling simulator: a Python (NumPy) split-step Fourier solver with a JavaScript frontend. Fire up to five wave packets at a potential barrier and pan and zoom around them.
Quantum Tunnelling Simulation Site
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