Electric Current
Electric current is the flow of electric charge. In a metal wire it is carried by conduction electrons; in an electrolyte or a Plasma by ions of both signs; in a vacuum tube by free electrons.
The standard account
Current is defined as the rate at which charge passes a surface, and is measured in amperes. Since the 2019 revision of the SI the ampere is fixed by defining the elementary charge as exactly 1.602176634 × 10−19 coulomb; before that it was defined by the force between two parallel current-carrying wires, which is why the magnetic constant used to have an exact value.
Two features of ordinary conduction are worth stating because they are frequently misremembered. First, the drift velocity of electrons in a household copper wire is of the order of a fraction of a millimetre per second, while the electrical signal propagates at a large fraction of c — the energy travels in the field around the conductor, not with the charge carriers. Second, a current-carrying wire is very nearly electrically neutral overall: the conduction electrons are moving through a fixed lattice of positive ions of equal total charge, which is why the residual electric field outside a current-carrying wire is small and hard to detect. Both points matter for the disputes below.
A current produces a magnetic field (Oersted, 1820; Ampère and Biot–Savart, 1820–1825), and a changing current or a changing flux induces an electromotive force (Faraday, 1831). Ohm's relation between current and potential difference holds for a wide class of materials but is a material property, not a law of nature.
On this wiki
- The surface-charge and neutrality question is taken up directly in A Misapprehension Concerning Electric Current Neutrality by Dave Dameron, Thomas E Phipps and Michael H Brill (Physics Essays, 2011), which argues that once the contraction of the moving electron assemblage is taken into account, a nonzero external electric field is predicted for a steady current in a stationary wire.
- Andre K T Assis has argued at length that surface charges on current-carrying conductors were understood by Wilhelm Weber and then forgotten — see Webers Electrodynamics.
- The force between currents is the central battleground of Category:Electrodynamics on this wiki: whether Ampère's original law, with its longitudinal component along the direction of current flow, or the Grassmann–Lorentz form is correct. Peter Graneau and Neal Graneau argued from exploding wires and railguns that longitudinal tension is real (The Graneau Experiments, Ampere-Neumann Electrodynamics of Metals); Panos Pappas pursued it in the Ampère bridge experiments; Thomas E Phipps assessed the evidence in Ampere Tension and Newton's Laws.
- Oersted's Task Remains Incomplete and Experimentum Crucis for Magnetic Interaction propose further discriminating experiments; Dual Dilemma From Faradays' Law – Constructive Fraud at the Foundation of Electrodynamics disputes the standard treatment of induction.
- On the astrophysical side, currents in space — Birkeland currents, double layers, filaments — are the organising idea of the Electric Universe and Plasma Cosmology material here, associated with Anthony L Peratt, Wallace Thornhill and Donald E Scott.