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Physics

Radiation Pressure calculator

Pressure an electromagnetic wave, like sunlight, exerts on an absorbing or reflecting surface.

Published 8 August 2026 · Updated 21 September 2026

What this calculator does

Light carries momentum as well as energy, so it exerts a real pressure on whatever it strikes. The pressure is tiny, around 4.5 micropascals from full sunlight, but it is measurable and it accumulates usefully over large areas and long times.

A reflecting surface feels twice the pressure of an absorbing one, because the light reverses direction rather than simply stopping. That doubling is why solar sails are made reflective.

The formula

FormulaAbsorbing: P = I/c; Perfectly reflecting (normal incidence): P = 2I/c, c = 299,792,458 m/s

For an absorbing surface, divide the intensity by the speed of light. For a perfectly reflecting surface at normal incidence, double that, since the momentum change is twice as large when the light bounces back.

TermMeaning
Radiation pressureForce per unit area exerted by electromagnetic radiation.
Solar constantThe roughly 1,361 W/m² of solar intensity at Earth's distance from the Sun.
Photon momentumEnergy divided by the speed of light. Photons have no mass but do carry momentum.

The inputs explained

FieldWhat to enter
Intensity (solar constant ≈ 1361) (W/m²)The incident intensity in watts per square metre. Full sunlight at Earth's orbit is about 1,361.

When to use it

Sizing a solar sail

Sail propulsion depends entirely on this pressure, so the required area follows from the thrust wanted.

Accounting for orbital perturbation

Solar radiation pressure gradually alters satellite orbits and has to be modelled for precise navigation.

Understanding optical tweezers

Focused laser light exerts enough pressure to trap and move microscopic particles, which is a Nobel-winning application.

Worked examples

Every figure in the tables below is produced by this page’s own calculator at build time, so the numbers and the tool always agree. Select any row to load that scenario.

How much pressure does light exert?

A range of intensities from sunlight to concentrated laser light.

Absorbing and perfectly reflecting surfaces
IntensityPressure (absorbing)Pressure (reflecting)
1,361 W/m²4.5398e-6 Pa9.0796e-6 Pa
10,000 W/m²3.3356e-5 Pa6.6713e-5 Pa
100,000 W/m²3.3356e-4 Pa6.6713e-4 Pa
Full sunlight at 1,361 W/m² gives just 4.5398 × 10⁻⁶ Pa on an absorbing surface, about a ten-billionth of atmospheric pressure. The reflecting figure is exactly double throughout, at 9.0796 × 10⁻⁶ Pa.

Questions

How can light push if photons have no mass?

Because momentum does not require mass. A photon's momentum is its energy divided by the speed of light, and transferring that momentum to a surface is what produces the pressure.

Why does reflection double the pressure?

Because the momentum change is twice as large. An absorbed photon delivers its momentum and stops; a reflected one delivers that momentum and then takes the same amount again in the opposite direction.

Can a solar sail really work?

Yes, and it has been demonstrated in orbit. The pressure is minuscule, but it is continuous and needs no propellant, so over months it accumulates into a substantial velocity change.

Does this affect anything on Earth?

Negligibly in daily life, since atmospheric pressure is around 20 billion times larger. It matters in space, in precision measurements, and at the focus of powerful lasers.

For the energy the light carries, see the photon energy calculator. For total power radiated by a hot body, see the Stefan-Boltzmann law calculator.