Solar Sail Trajectory (2D)
Orbital radius
1.00 AU
Speed
29.8 km/s
Photon thrust
4.8 mN
Elapsed
0.0 d
Spec. orbital energy
−887 MJ/kg
How it works

This is the plan-view (looking down on the ecliptic) companion to the 3D solar-sail simulator — same equations of motion, drawn in 2D so the spiral geometry and the trail's curvature are easy to read directly, plus a live specific-orbital-energy readout that makes the outward/inward pumping caused by the sail's pitch visible as a number, not just a shape.

F_photon = (2·S·A·cos²α) / c        (S = solar flux at current radius)
S(r) = S₀ · (r₀/r)²
a_tangential = F_photon·sin(α) / m   → changes specific orbital energy ε → spiral in/out
ε = v²/2 − GM/r
  • Sail pitch angle α — tilts the sail; positive angles add energy (spiral outward), negative angles remove it (spiral inward), α=0 gives pure radial push with no spiral.
  • Sail area — larger reflective area intercepts more photons, scaling thrust linearly.
  • Craft mass — heavier craft accelerates more slowly for the same thrust.
  • Time acceleration — speeds up the simulation so orbital drift becomes visible in seconds instead of years.
  • Reset orbit — returns the craft to a circular 1 AU starting orbit.
  • Trail — toggles the fading path trace so you can compare successive loops.

Real-world relevance: missions like JAXA's IKAROS and The Planetary Society's LightSail have demonstrated exactly this photon-pressure steering to change orbits without any propellant.