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Fiber lasers are compact compared to solid-state or gas lasers of comparable power, because the fiber can be bent and coiled, except in the case of thicker rod-type designs, to save space. They have lower cost of ownership. [1] [2] [3] Fiber lasers are reliable and exhibit high temperature and vibrational stability and extended lifetime. High ...
Ytterbium: 2 O 3 (glass or ceramics) laser 1.03 μm Laser diode Ultrashort pulse research, [9] Ytterbium-doped glass laser (rod, plate/chip, and fiber) 1. μm Laser diode Fiber version is capable of producing several-kilowatt continuous power, having ~70-80% optical-to-optical and ~25% electrical-to-optical efficiency.
The noise term is important to describe lasers used in fiber-optic communication and LIDAR remote sensing. Relative intensity noise can be generated from cavity vibration, fluctuations in the laser gain medium or simply from transferred intensity noise from a pump source .
Laser engraving metal plates are manufactured with a finely polished metal, coated with an enamel paint made to be "burned off". At levels of 10 to 30 watts, excellent engravings are made as the enamel is removed quite cleanly. Much laser engraving is sold as exposed brass or silver-coated steel lettering on a black or dark-enamelled background.
IPG pursued raising the maximum wattage of fiber laser technology. [23] Between 2002 and 2003, IPG developed multi-kW industrial class fiber lasers. This was accomplished by combining the output beams of several 100-W fiber lasers. [22] In 2006 IPG raised more than $90 million, net of proceeds, in an initial public offering. [24]
A fiber disk laser is a fiber laser with transverse delivery of the pump light. They are characterized by the pump beam not being parallel to the active core of the optical fiber (as in a double-clad fiber ), but directed to the coil of the fiber at an angle (usually, between 10 and 40 degrees).