Custom Calorimeter 190-1000nm Round Aperture

Specifications

Aperture Shape: Round
Aperture Size (larger Dimension): 50 mm
Spectral Range: 190 - 10000 nm
Calibration Uncertainty: ±3%
Repeatability: better than ±2%
Beam Energy: 16 kJ
Aperture Size: 420 x 427 mm
Pulse Energy Density: more than 15 J/cm²
Minimum Beam Energy: 50 mJ
Wavelength Range: 190 nm to 25 microns
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Features


  • OUTSTANDING SIGNAL TO NOISE RATIOS

  • HIGH SENSITIVITY

  • VACUUM COMPATIBILITY

  • ATTENTION TO DETAIL AND WORKMANSHIP

Applications


  • Laser Fusion Experiments: Inertial confinement fusion (ICF) involves initiating nuclear fusion reactions by heating and compressing a fuel target, typically a pellet containing a mixture of deuterium and tritium. High-energy laser beams deliver energy to the outer layer of the target to compress and heat the fuel, replicating the energy generation process of the sun's core.

  • High Energy Inertial Confinement Fusion Calorimetric Measurement: Gentec-EO calorimeters are designed for the largest and highest energy laser beams, making them ideal for high energy inertial confinement fusion experiments.

  • Extreme Energy Measurement: With calibration uncertainties of ±3% and repeatabilities better than ±2%, Gentec-EO calorimeters provide the best solution for extreme energy measurement and balancing in multi-laser systems.

  • Large Aperture Measurement: Designed for beams as large as 420 x 427 mm in aperture size, these calorimeters can withstand pulse energy densities of more than 15 J/cm².

  • Delicate Applications: Highly sensitive calorimeters are available for beam energies as low as 50 mJ, suitable for the most delicate applications.

  • Broad Spectral Range: Calorimeters span from 190 nm to 25 microns, with the capability to extend these limits further.