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A light-emitting diode (LED) is a type of semiconductor device that emits light when an electric current flows through it in the forward direction. The LED is a heavily doped p-n junction diode, which means that the doping concentration of impurities in the p-type and n-type regions is much higher than in a regular diode. This high doping level ensures that there is a large number of charge carriers (electrons and holes) available to participate in the conduction process, which allows for efficient light emission.
When a forward bias voltage is applied to the LED, the free electrons in the n-type region move towards the p-type region, while the holes in the p-type region move towards the n-type region. As the electrons and holes move across the p-n junction, they recombine and release energy in the form of light. This process is known as electroluminescence, and the color of the light emitted depends on the energy bandgap of the semiconductor material used to make the LED.
The heavily doped p-n junction in an LED also means that the depletion region is very narrow, which allows for efficient carrier injection and recombination. Additionally, the doping concentration of impurities can be carefully controlled during the fabrication process to tune the energy bandgap and emission wavelength of the LED.
LEDs are widely used in a variety of applications, including lighting, displays, and communications. They are more energy-efficient and longer-lasting than traditional incandescent light bulbs and have a lower environmental impact.

Light Emitting Diode
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