It is a specially fabricated pn junction diode. This diode emits laser light when it is forward - biased.
LASER DIODES
Definition
It
is a specially fabricated pn junction diode. This diode emits laser light when
it is forward - biased.
Principle
When the p-n junction diode is forward-biased
(fig. 4.23 (a)), the electrons from n-region and holes from p-region cross the
junction and recombine with each other.
During
the recombination process, the light radiation (photons) is released from a
direct band gap semiconductors like GaAs. This light radiation is known as
recombination radiation (fig. 4.23 (b)).
The
photon emitted during recombination stimulates other electrons and holes to
recombine. As a result, stimulated emission takes place and laser light is
produced.
Construction
The construction of laser diode is shown in fig 4.24.
i.
The active medium is a p - n junction diode made from a single crystal of
gallium arsenide. This crystal is cut in the form of a platelet having a
thickness of 0.5 mm. noise This platelet consists of two regions n - type and p
- type.
ii.
The metal electrodes are connected to both upper(p-region) and lower (n-region)
surfaces of the loveit (p-region) semiconductor diode. The forward bias voltage
is applied through metal electrodes.
iii.
Now the photon emission is stimulated in a very thin rignol layer of pn
junction.
iv.
The end faces of the pn junction are well polished and parallel to each other.
They act as an optical resonator through which the emitted light comes out.
Working
i.
The energy level diagram of laser diode is shown in fig 4.25.
ii. When the pn junction is forward-biased, the electrons and holes are injected into junction region.
iii.
The region around junction contains a large number of electrons in the
conduction band and holes in the valence band.
iv.
Now the electrons and holes recombine with each other. During recombination,
light photons are produced.
v.
When the forward - biased voltage is increased, more light photons are emitted.
These photons trigger a chain sqy-of stimulated recombinations resulting in the
emission of more light photons in phase.
These
photons moving at the plane of the junction travel back and forth by reflection
between two polished surfaces of the junction. Thus, the light photons grow in
strength.
After
gaining enough strength, laser beam of wavelength 8400 Å is emitted from the
junction.
The
wavelength of laser light is given by
Characteristics
i.
Type: Solid state semiconductor
laser.
ii.
Active medium: A pn junction diode
made from a single crystal of gallium arsenide.
iii.
Pumping method: Direct conversion
method.
iv.
Power output: a few mW.si
v.
Nature of output: Continuous wave or
pulsed output.
vi.
Wavelength of output: 8300 Å to 8500
Å.
Advantages
i.
This laser is very small in size and compact.
ii.
It has high efficiency.
iii.
The laser output can be easily increased by increasing the junction current.
iv.
It is operated with less power than ruby and CO2 lasers.
v.
It requires very little additional equipment.
vi.
It emits a continuous wave output or pulsed output.
Disadvantages
i.
Laser output beam has large divergence.
ii.
The purity and monochromacity are poor.
iii.
It has poor coherence and stability.
Applications of Laser Diode
i.
Used in fibre optic communication.
ii. Used in various measuring devices such as range finders, bar-code readers.
iii.
Used in printing industry both as light sources for scanning images and for
resolution printing plate manufacturing.
iv.
Infrared and red laser diodes are common in CD players, CD-ROM and DVD
technology. Violet lasers are used in HD-DVD and Blue-ray technology.
v.
High power laser laser diodes are used in industrial applications such as heat
treating, cladding, seam and for pumping other lasers.
vi.
Used in laser medicine especially, dentist
Physics for Electronics Engineering: Unit IV: Optical Properties of Materials : Tag: : Construction, Working Principle, Characteristics, Energy Band diagram, Advantages, Disadvantages, Applications, Uses - Laser Diodes
Physics for Electronics Engineering
PH3254 - Physics II - 2nd Semester - ECE Department - 2021 Regulation | 2nd Semester ECE Dept 2021 Regulation