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Q.At equilibrium, in a p-n junction diode the net current is (A) due to diffusion of majority charge carriers. (B) due to drift of minority charge carriers. (C) zero as diffusion and drift currents are equal and opposite. (D) zero as no charge carriers cross the junction.

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At equilibrium, the diffusion current (majority carriers) and drift current (minority carriers) exactly cancel each other across the depletion region, making the net current zero.

When a p-n junction forms, two competing processes begin immediately. The p-side has an abundance of holes (majority carriers) and a few electrons (minority carriers); the n-side has the opposite. The concentration gradient drives majority carriers to diffuse across the junction—holes from p to n, electrons from n to p. This diffusion current would continue indefinitely if nothing opposed it.

But as majority carriers diffuse, they leave behind immobile ionized atoms: acceptor ions (negative) on the p-side and donor ions (positive) on the n-side. These fixed charges create a depletion region with a built-in electric field pointing from n to p. This field exerts a force on any charge carrier in the region. Minority carriers—electrons on the p-side and holes on the n-side—experience a force in the direction of the field and drift across the junction. This drift current flows opposite to the diffusion current.

Equilibrium is reached when these two currents become equal in magnitude. The system self-adjusts: if diffusion momentarily dominates, more ions are exposed, the field strengthens, and drift increases until balance is restored.

Now let's examine each option:

  1. Option (A): "due to diffusion of majority charge carriers"

    Diffusion current does exist, but it is not the net current. At equilibrium, diffusion is balanced by drift, so the net contribution is zero.

  2. Option (B): "due to drift of minority charge carriers"

    Drift current also exists and equals the diffusion current in magnitude, but again, the net current is what matters. The two cancel.

  3. Option (C): "zero as diffusion and drift currents are equal and opposite" …

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