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Q.Why is there no photoelectric current at frequencies below threshold frequency? OR Write down the Einstein photoelectric equation.

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2024Subjective· 1mImportance★★★★★
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Photoelectric emission is a one-photon-one-electron process; if a single photon's energy is less than the work function, it simply cannot eject an electron, regardless of how many photons (how much intensity) strike the surface. The alternative part just asks for Einstein's photoelectric equation.

Why no current below threshold frequency

In the photon picture, light of frequency ν\nu is a stream of photons each carrying a fixed energy hνh\nu. Photoemission is essentially a one-to-one interaction: one photon can, at most, transfer all its energy to one electron. For an electron to be freed from the metal surface, the absorbed photon energy must at least equal the work function ϕ0\phi_0 of the metal:

hν≥ϕ0h\nu \ge \phi_0

If ν<ν0=ϕ0/h\nu <\nu_0 = \phi_0/h (the threshold frequency), then hν<ϕ0h\nu < \phi_0 for every single photon — no individual photon carries enough energy to overcome the surface binding energy, however many photons (however intense the beam) are incident. Since no electron can absorb energy from more than one photon at a time (the process is instantaneous, not cumulative), no photoelectron is ever emitted, and the photoelectric current is exactly zero below ν0\nu_0 — independent of intensity.

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