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PHYSICS / PLASMA PHYSICS

Electron Plasma Frequency Calculator

Calculate ideal electron plasma angular frequency and cyclic frequency from free-electron density.

  • 01 Calculated in this tab
  • 02 Values stay in this browser tab
  • 03 Use boundary

Conversion input

Known value

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METHOD / WORKED EXAMPLE

Understand Electron Plasma Frequency

Calculate ideal electron plasma angular frequency and cyclic frequency from free-electron density. Inputs remain visible so the physical model and units can be checked instead of treated as a black box.

WORKED DEFAULT

Check the calculation with the default inputs

For 10^18 free electrons per cubic metre, angular frequency is about 5.64 × 10^10 rad/s and cyclic frequency about 8.98 GHz.

  1. Read the measured inputsn_e
  2. Apply the physical modelω_pe = sqrt(n_e e^2/(ε_0 m_e)); f_pe = ω_pe/(2π).
  3. Check domain and unitsElectrons form a cold, uniform, unmagnetized, collisionless plasma with a stationary neutralizing background.

READ THE RESULT

Interpret the output in context

The frequency characterizes collective electron-density oscillation in the ideal model and scales with the square root of density.

ASSUMPTIONS AND LIMITS

Know where the model stops

  • Density counts free electrons per cubic metre.
  • Constants use the displayed SI CODATA values.

Electrons form a cold, uniform, unmagnetized, collisionless plasma with a stationary neutralizing background.

Use internally consistent units and retain extra precision when carrying the result into another calculation.

COMMON QUESTIONS

Electron Plasma Frequency Calculator FAQs

Which model does Electron Plasma Frequency Calculator use?

Combine free-electron number density with elementary charge, vacuum permittivity, and electron mass, then take the square root. It is distinct from cyclotron frequency, which depends on magnetic field and charge-to-mass ratio. The calculator evaluates only the stated idealized equation and supplied values. It does not infer missing conditions, choose an experimental convention, or certify a measurement. Keep every quantity in the displayed unit and verify the model against the physical setup before relying on the result.

How should I interpret the Electron Plasma Frequency Calculator result?

The frequency characterizes collective electron-density oscillation in the ideal model and scales with the square root of density. Propagation cutoffs and dielectric response depend on wave mode and a more complete plasma model. Numerical precision does not imply experimental accuracy. Compare the output with scale, sign, limiting cases, and an independent source, then account for uncertainty in measured inputs and constants before using it in laboratory, engineering, or safety-sensitive work.

What is outside the scope of Electron Plasma Frequency Calculator?

Electrons form a cold, uniform, unmagnetized, collisionless plasma with a stationary neutralizing background. It excludes temperature, collisions, magnetic field, ion dynamics, relativistic particles, gradients, and non-neutral conditions. The result is educational and is not a simulation, calibration, engineering approval, or safety determination. More complete models may require geometry, material response, boundary conditions, relativistic frames, dispersion, losses, uncertainty propagation, or numerical field solutions not represented by these inputs.

Use boundary

Calculation path

Combine free-electron number density with elementary charge, vacuum permittivity, and electron mass, then take the square root. The page evaluates the displayed equation from your supplied values and presents both symbolic and substituted KaTeX working so the arithmetic can be checked.

Calculation path

ω_pe = sqrt(n_e e^2/(ε_0 m_e)); f_pe = ω_pe/(2π).