Q.An EM wave of intensity falls on a surface kept in vacuum and exerts radiation pressure on it. Which of the following are true?
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Start your 14-day free trial to unlock the full solution →Radiation pressure depends on how the surface responds to the incident wave: for total absorption, for total reflection, and for a real, partially-reflecting surface (reflectivity ), which always lies between and . Of the four statements, (a), (c), and (d) are correct; only (b) is false.
Momentum carried by an EM wave
An electromagnetic wave of intensity (power per unit area) carries momentum at the rate
per unit area per unit time, since the wave's momentum density equals its energy density divided by . When this momentum is transferred to a surface, the rate of transfer per unit area is the radiation pressure.
Case 1 — total absorption
If the surface absorbs the wave completely, all of its incident momentum ( per unit area per unit time) is delivered to the surface and none is returned. The radiation pressure is therefore
Statement (a) matches this exactly. True.
Case 2 — total reflection
If the surface reflects the wave straight back, the incident momentum (towards the surface) must first be brought to zero, and then an equal momentum must be imparted to send the wave back out. The total momentum transferred to the surface is twice the incident value:
Statement (b), which claims for total reflection, uses the absorption value for a reflecting surface — this understates the pressure by a factor of 2. False.
Statement (c), which correctly gives for total reflection, matches the derivation above exactly. True.
Case 3 — a real (partially reflecting) surface …
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