Potential profile V(x) |ψ(x)|² at EF Electron packets
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Resonant Tunneling Diode: Double-Barrier Nanostructure

This simulator solves the 1-D Schrödinger equation exactly (transfer-matrix method) for an electron crossing a double-barrier quantum well — the emitter-barrier-well-barrier-collector geometry at the heart of a real resonant tunneling diode. Drag the barrier height, barrier width and well width to reshape the transmission resonance, then sweep the bias voltage to watch the resonant level cross the emitter's Fermi energy and produce negative differential resistance: current that falls as voltage rises, the hallmark of quantum-confined nanoelectronic devices.