Laserbeamblock

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High energy laserbeam dump

Reuven Silverman of Ophir discusses the critical role of M2 measurements in laser technology for optimization and quality control in various industries.

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For simple low-power applications, beam dumps made of black velvet or flock paper are used, whereas for high power applications gas or water beam dumps are used. Beam dumps are an important part of linear colliders, energy recovery systems. This datasheet will elaborate on the construction, working and applications of beam dumps.

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Beam dumpprice

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A beam dump maybe defined as a device used for absorbing the energy from photons or other particles. A beam dump in the context of optics can be described as an optical element that absorbs a beam of light. Selecting a beam dump for the application depends on factors such as power, back-reflection and heat.

NewportBeam Dump

Laserbeam dumpmaterial

The VINCI series of ultrafast fiber lasers has a central emission wavelength of 1064 nm and features a unique combination of short pulse durations.

For efficient energy absorption, a beam dump must be made of material with high conductivity. They must also have high melting temperature and yield stress. Some of the materials used for beam dumps are beryllium, carbon, aluminum and copper. Water and gas dumps are also used for high power applications. Gas dumps are made of noble gases.

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These F-theta lenses by Avantier are designed for consistent spot size and uniform field curvature correction, ideal for high-resolution imaging applications.

When a high energy beam is intercepted by a beam dump (e.g. water), that is placed in a direction transverse to that of the beam, the energy of the beam is dissipated into the dump. The remaining portion of the beams energy is absorbed by solid placed further down the dump.