Description
2213-75TSLKTB Air-cooled argon ion laser
The principle of argon ion laser mainly involves gas discharge and self-excited oscillation process.
First, gas discharge is a prerequisite for the production of argon ions. In an argon ion laser, argon
gas is placed in a specific studio, and through AC high voltage discharge, argon molecules are ionized
to form argon ions and free electrons. As the electrons accelerate in the electric field, they collide with the argon ion, transferring energy to it and leaving it in an excited state.
Then, when the argon ion undergoes a non-radiative transition from the excited state to the ground state, a
swarm of photons is released, which is the argon ion laser. This process, called self-excited oscillation, is
the key to the preparation of efficient, stable, high-power argon-ion lasers. In order to achieve high efficiency,
stability and low noise self-excited oscillation, it is necessary to adjust the ion excitation level and the light intensity in the cavity.
In addition, argon ion lasers can output multiple oscillating spectral lines, including visible and ultraviolet
radiation. Argon ion laser can output high power and high quality laser beam under the condition of high current arc discharge or pulse discharge.
In general, argon ion laser produces argon ion by gas discharge and laser by self-excited oscillation process, which has a wide application prospect.
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