Electrodynamics
Magnetostatics and the vector potential
Explore the magnetic field around a current-carrying wire and the vector potential . Verify , the theorem , and the dependence .
Equipment
- Field model around the wire (two view modes A/B)
- Sliders for amplitude/source, wavelength/scale, frequency/velocity, viewing angle
- "Model A/B" toggle buttons and "Pause"
Procedure
Observe the B field around the wire
In figure 1 "Magnetic field around the wire", watch field lines encircle the current axis. Raise the "Amplitude / source" slider (larger current I) and note the field-line density grow: . Change "Wavelength / scale" to zoom and see fall off like .
Compare the two display models
Press "Model A" and "Model B" to switch the field visualization (e.g., field lines versus vector field). In figure 2 "Vector potential A and gauge", watch run along the wire and curl: . Note that adding to leaves unchanged — gauge freedom.
Check the flux theorem
Vary "Frequency / velocity" and "Viewing angle / coefficient" in figure 2, then press "Pause" for a static view. Picture a closed loop around the wire: equals the total flux threading it — a visual form of Stokes' theorem and the basis of the Aharonov–Bohm effect.