Problem
A mechanical wave requires a material medium (air, water, a string), whereas an electromagnetic wave also travels in vacuum. Explain which elements of Maxwell’s model make this propagation possible.
Solution
What oscillates in an EM wave. In a mechanical wave, the particles of the medium oscillate. In an electromagnetic wave, on the other hand, it is the fields and that oscillate — physical entities defined at every point in space, including vacuum. No vibrating matter is needed.
The self-sustaining chain. Maxwell’s equations show that the two fields generate each other:
- an electric field varying in time generates a magnetic field (the Ampère-Maxwell law, with the displacement-current term );
- a magnetic field varying in time generates an electric field (the Faraday-Neumann-Lenz law).
A change in produces a varying , which in turn produces a varying , and so on: the disturbance regenerates itself and propagates without needing material support.
The speed. Combining the equations yields a wave that travels in vacuum at the speed which depends only on two vacuum constants, not on the properties of a medium.
No aether. In the nineteenth century an invisible medium, the “aether”, was postulated as the support for light. The Michelson-Morley experiment (1887) searched for it and did not find it: it does not exist. Maxwell’s theory does not need it.
Summary fields and . Their mutual generation (Ampère-Maxwell + Faraday) makes the propagation self-sustaining: .
The EM wave is not the vibration of a substance, but of the
Connections
Topics: Electromagnetic waves Concepts: Electromagnetic wave · Maxwell’s equations