400-863-9100

Inprentus(美国)

https://www.inprentus.com

地址:
51 E Kenyon Rd. Champaign, IL 61820 United States
电话:
+1 217-239-9785
传真:
产品:
衍射光栅 

公司简介

Advanced manufacturing of precision optics using proprietary nano-scale contact-mode lithography techniques

Inprentus designs, manufactures, and sells x-ray and EUV diffraction gratings for use in synchrotron radiation facilities. Fortune 500 companies, academic institutions and government laboratories around the world use these facilities for a variety of scientific and commercial applications.


产品列表

Diffraction grating products

  • Line densities at thousands of lines per millimeter

  • variable line spacing (VLS)

  • Blaze angles as low as 0.1 degree

  • Large gratings up to 500 mm in length

  • Broad range of optics design capabilities

Datasheets

View more details about a specific grating category by reading more from our datasheets below.


VLS diffraction gratings for synchrotron applications

High efficiency mechanically ruled VLS blazed diffraction gratings

  • Simulation services for reliable predictions of in-beamline grating efficiency

  • Line densities at thousands of lines per millimeter

  • variable line spacing (VLS)

  • Blaze angles as low as 0.1 degree

  • Large gratings up to 500 mm in length

  • Broad range of optics design capabilities


VLS diffraction gratings for FEL applications

High efficiency mechanically ruled VLS blazed diffraction gratings

  • Diffraction gratings for beamline diagnostics

  • Ultra-low blaze angles for improved efficiency

  • Simulation services for reliable predictions of in-beamline grating efficiency

Blaze Angles.jpg

Blaze Angle Profiles

Ultra low blaze angles improve efficiency and can be manufactured by Inprentus. A single unsmoothed AFM trace of a 50 lines/mm grating with a blaze angle of 0.1°.

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EUXFEL Efficiency-1.jpg

Diagnostic Gratings

Diagnostic gratings can be custom designed to meet the needs of any FEL application. Using the spectral reflection of the coated grating and zeroith order diffraction of the grating, the majority of photons may be passed downstream to the beamlines, with a small fraction being directed into a spectrometer for in-situ diagnostics of each pulse train generated by the laser.

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