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A complex-wavefunction visualizer that shows the real, imaginary, and probability components side by side.
Overview
Quantum Field renders a 2D complex wavefunction in real time. The real, imaginary, and probability components are drawn as separate color-mapped fields; the wave evolves under a configurable set of rules.
Tune the field's initial state, dispersion, and time speed to see interference fringes, dispersion packets, and wave-particle-like localization emerge.
Features
real part, imaginary part, probability density.
Time speed, and initial state in the right sidebar.
JPG of the current frame from the toolbar.
How to use
Steps take about a minute.
Open the right sidebar to set the initial wave packet, dispersion, and time speed. Watch the Re, Im, and probability panels evolve in real time. Use the toolbar Pause, Reset, and Export PNG/JPG.
Use cases
FAQ
It's a stylized visualizer of a complex scalar field with configurable dispersion. It is not a numerical solver for a specific physical system, but it captures the qualitative look of wave-packet dynamics, interference, and dispersion.
Real, imaginary, and probability density are three different scalar fields. Each is mapped through its own color ramp so you can see the phase structure and the localization separately.
A complex-wavefunction visualizer that shows the real, imaginary, and probability components side by side.
Overview
Quantum Field renders a 2D complex wavefunction in real time. The real, imaginary, and probability components are drawn as separate color-mapped fields; the wave evolves under a configurable set of rules.
Tune the field's initial state, dispersion, and time speed to see interference fringes, dispersion packets, and wave-particle-like localization emerge.
Features
real part, imaginary part, probability density.
Time speed, and initial state in the right sidebar.
JPG of the current frame from the toolbar.
How to use
Steps take about a minute.
Open the right sidebar to set the initial wave packet, dispersion, and time speed. Watch the Re, Im, and probability panels evolve in real time. Use the toolbar Pause, Reset, and Export PNG/JPG.
Use cases
FAQ
It's a stylized visualizer of a complex scalar field with configurable dispersion. It is not a numerical solver for a specific physical system, but it captures the qualitative look of wave-packet dynamics, interference, and dispersion.
Real, imaginary, and probability density are three different scalar fields. Each is mapped through its own color ramp so you can see the phase structure and the localization separately.
A complex-wavefunction visualizer that shows the real, imaginary, and probability components side by side.
Overview
Quantum Field renders a 2D complex wavefunction in real time. The real, imaginary, and probability components are drawn as separate color-mapped fields; the wave evolves under a configurable set of rules.
Tune the field's initial state, dispersion, and time speed to see interference fringes, dispersion packets, and wave-particle-like localization emerge.
Features
real part, imaginary part, probability density.
Time speed, and initial state in the right sidebar.
JPG of the current frame from the toolbar.
How to use
Steps take about a minute.
Open the right sidebar to set the initial wave packet, dispersion, and time speed. Watch the Re, Im, and probability panels evolve in real time. Use the toolbar Pause, Reset, and Export PNG/JPG.
Use cases
FAQ
It's a stylized visualizer of a complex scalar field with configurable dispersion. It is not a numerical solver for a specific physical system, but it captures the qualitative look of wave-packet dynamics, interference, and dispersion.
Real, imaginary, and probability density are three different scalar fields. Each is mapped through its own color ramp so you can see the phase structure and the localization separately.
A complex-wavefunction visualizer that shows the real, imaginary, and probability components side by side.
Overview
Quantum Field renders a 2D complex wavefunction in real time. The real, imaginary, and probability components are drawn as separate color-mapped fields; the wave evolves under a configurable set of rules.
Tune the field's initial state, dispersion, and time speed to see interference fringes, dispersion packets, and wave-particle-like localization emerge.
Features
real part, imaginary part, probability density.
Time speed, and initial state in the right sidebar.
JPG of the current frame from the toolbar.
How to use
Steps take about a minute.
Open the right sidebar to set the initial wave packet, dispersion, and time speed. Watch the Re, Im, and probability panels evolve in real time. Use the toolbar Pause, Reset, and Export PNG/JPG.
Use cases
FAQ
It's a stylized visualizer of a complex scalar field with configurable dispersion. It is not a numerical solver for a specific physical system, but it captures the qualitative look of wave-packet dynamics, interference, and dispersion.
Real, imaginary, and probability density are three different scalar fields. Each is mapped through its own color ramp so you can see the phase structure and the localization separately.