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Physics · Ch 6 — Optics

Interference with Polychromatic Light

6.10.5

Interference with Polychromatic Light

When polychromatic (white) light is used instead of a single wavelength in an interference experiment, coloured fringes of varying width appear on the screen, since different colours have different wavelengths and hence different fringe widths β=λD/d\beta=\lambda D/d. The central (zeroth-order) fringe, however, always stays sharply bright and white, because at the exact centre OO every colour has zero path difference simultaneously, so only constructive interference is possible there for every wavelength at once; away from the centre, each colour's bright fringes fall at slightly different positions, so the fri …

Misc Example 6.29Least distance where bright fringes of two different wavelengths coincide

Worked out. Two wavelengths, 560 nm and 420 nm, are used together in Young's double-slit experiment with d = 3 mm and D = 1 m. Since fringe position y(n) = n lambda D/d, and 420 is 3/4 of 560, the nth-order bright fringe of the 560 nm light coincides with the (n+1)th order bright fringe of the 420 nm light when n times 560 equals (n+1) times 420, which (after simplifying the ratio 560/420 = 4/3) is satisfied first at n = 3 (so the 3rd order of 560 nm coincides with the 4th order of 420 nm). Substituting n = 3 into y = n lambda D/d for the 560 nm light gives y = 3 times 560e-9 times 1 / 3e-3 = 0.560e-3 m = 0.560 mm -- the smallest distance from the centre at which the two independent fringe patterns li …