PhantomQ Labs — Barrier and Wave-Packet Simulation
Quantum Tunneling Lab
PlannedQuantum Tunneling Lab will explore transmission, reflection, and probability behavior as quantum states interact with potential barriers.
What This Lab Will Model
Barrier and wave-packet simulation.
This lab is planned to simulate a quantum wave packet encountering a potential barrier, computing how much of the packet is transmitted through the barrier and how much is reflected, along with how its probability distribution evolves over time on either side.
Intended Capabilities
What the finished lab is intended to do.
- Configure barrier height, width, and shape, and observe the resulting transmission and reflection behavior.
- Watch a wave packet's probability density evolve over time as it approaches and interacts with a barrier.
- Compare computed transmission probability against the underlying numerical model at each configuration.
Scope Boundary
This lab is planned to model one-dimensional, single-particle barrier problems. It is not intended to model multi-particle interactions, three-dimensional scattering geometries, or relativistic effects. No numerical model has been implemented yet — this page describes intended scope, not validated results.
Development Status
Planned.
Quantum Tunneling Lab has not yet entered active development. It is documented here as a planned addition to the PhantomQ Labs catalog.

Powered by PhantomQ
Quantum Tunneling Lab is built on PhantomQ, PhantomLabs Technology's quantum-mechanics computation engine — currently in foundational development.
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