KUXRL2 Allicdata Electronics
Allicdata Part #:

KUXRL2-ND

Manufacturer Part#:

KUXRL2

Price: $ 2.81
Product Category:

Uncategorized

Manufacturer: Eaton
Short Description: TERMINAL BLOCK
More Detail: N/A
DataSheet: KUXRL2 datasheetKUXRL2 Datasheet/PDF
Quantity: 1000
250 +: $ 2.55150
Stock 1000Can Ship Immediately
$ 2.81
Specifications
Series: *
Part Status: Active
Description

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KUXRL2 stands for Kuester-Universpark X-ray laser 2, which is a gaseous jet-cooled X-ray laser known for its extreme brightness and single-shot photonic emission. This laser has applications in a variety of areas, such as high-speed characterization of matter, ultrafast imaging, and precise sampling of laser-induced plasmas. The working principle behind KUXRL2 is not complex, but rather integrated. By controlling the pressure and temperature of the gas jet, the laser\'s output energy is determined, ultimately resulting in a higher-intensity beam.

The operating principle behind KUXRL2 is a mixture of two laser techniques – coherent and incoherent – to achieve a higher peak and average power. The first technique uses a single waveguide to produce a coherent beam and consists of multiple passes of light passing through a series of optical components. The second method, incoherent, is based on a continuous source of light from a medium that emits photons in a fixed direction. In combination, these two laser techniques create an intense beam with pulses as short as 1 picosecond, which allows for applications in imaging and spectroscopy.

KUXRL2 also holds a high energy efficiency. The gas jet is injected into a gas laser apparatus, and the laser output is determined by the gas pressure. The high laser energy efficiency of KUXRL2 is due to the fact that the laser system emits an average power of tens of megawatts per pulse, leading to a greater average output. The compression of the beam also helps to achieve an extremely high peak power.

KUXRL2 has a broad range of applications. For example, it can be used in various types of spectroscopy such as X-ray diffraction and spectroscopy, allowing for precise imaging of chemical and structural changes. X-ray imaging can also be used in biological research to study the structure of cells and proteins, as well as to measure the shape and size of other biological structures. The exact position and distribution of atoms and molecules can be determined using KUXRL2 X-ray lasers.

KUXRL2 laser systems can also be used in the production of ultrafast optics, which can be used to measure incredibly small features, such as the surface structure of semiconductors. In addition, KUXRL2 can be used to produce high-temperature plasmas and to study the chemistry of gas mixtures, as well as in the production of all-optical circuits.

KUXRL2 laser systems can be utilized for very precise sample imaging, allowing for more accurate diagnoses of diseases as well as for experiments that require extremely small and fine details. It can also be used for processing materials, such as cutting and welding, and in the creation of nano-scale electronic components.

KUXRL2\'s applications extend even further, into the realm of environmental research. Its ability to reveal the shape and size of urban and natural objects can provide us with valuable information regarding climate change and air pollution. KUXRL2 can detect microscopic particles in the air, and can be utilized for monitoring the levels of pollutants, toxins, and allergens in the atmosphere. In addition, it can be used to detect drought-induced changes and the effects of climate change on various ecosystems.

KUXRL2 is an incredibly versatile laser system that can be utilized in a wide range of applications. Its combination of two techniques – coherent and incoherent – produces an intense beam with exceptionally high peak and average power, leading to a high energy efficiency. Its applications span many areas, such as high-speed characterization of matter, super-resolution imaging, ultrafast optics, nano-scale fabrication, and environmental research. It is no wonder that KUXRL2 is regarded as one of the leading X-ray lasers in the world.

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