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HyperFine

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The HyperFine series of spectrometers for low intensity sources are designed for measuring hyperfine spectra and subtle spectral shifts from scattered light or distributed sources.  The HyperFine spectrometer from LightMachinery is a compact  spectrometer capable of 1 picometer resolution.   Enabled by VIPA etalons produced by LightMachinery's patented fluid jet polishing technology. 

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Introduction

The HyperFine HF Series spectrometers are ideal for measuring fine features in plasmas, pulsed laser characterization and for measuring the small spectral shifts from Brillouin or Raman scattering.  Simple PC based software allows the user to review spectra in real time and save or export for more analysis.  LabView drivers enable the HyperFine spectrometer to be integrated into automated experimental setups.

  • Specifications

Part NumberSpectral RegionForm
Factor
Total rangeSimultaneous rangeResolution*Resolution



with grating rotation
at a fixed grating positionpm1/cm
HF-8888-UVUVC200 - 400nmFixed 60nm range<30pm0.9/cm
HF-8888-UVLIBSUV (Gated)C200 - 400nmFixed 60nm range<30pm0.9/cm
HF-9332VISC450 - 700nmFixed 250nm range<25pm0.9/cm
HF-9353NIRC750 -1050nmFixed 300nm range<40pm0.5/cm
HF-8989-1VISA425 - 500 nm17 nm1.7 pm0.08/cm
HF-8989-2VISA500 - 600 nm16 nm1.6 pm0.05/cm
HF-8989-2eVISA525 - 640 nm16 nm1.6 pm0.05/cm
HF-8989-3VISA600 - 700 nm16 nm1.6 pm0.04/cm
HF-8995-1NIRA700 - 800 nm20 nm2.0 pm0.03/cm
HF-8991-3NIRA800-950 nm25 nm2.0 pm0.02/cm
HF-8995-2NIRA950 - 1100 nm25 nm2.5 pm0.02/cm
HF-8995-3-PLASMANIRD775-900nm9 nm0.9 pm0.01/cm
HF-8999-PK-LLL-**VISD

See Brillouin HyperFine1.0 pm0.04/cm
*-UHR2X resolution upgrade to any model.


  • Notes

  • u Form Factors (enclosure dimensions, does not include camera or input port)

    • ØA  dimensions; 250 x 600 x 150mm,  weight; 20kg

    • ØB  dimensions; 200 x 200 x 90mm,  weight; 2kg

    • ØC  dimensions; 160 x 200 x 100mm,  weight; 1.5kg

    • ØD  dimensions; 700 x 150 x 400mm,  weight; 28kg

    • ØE dimensions; 700 x 150 x 250mm, weight 28kg

    • ØF dimensions; 400 x 500 x 150mm, weight 24kg

  • u *Range and resolution are measured at the middle of the wavelength range

  • u Accuracy: < 200pm for fixed grating units, <20pm for all others following calibration, an external calibration source is required

  • u Dynamic Range: 100:1 to 500:1 in a single shot measurement, up to 50dB with exposure bracketing

  • u Simultaneous range / resolution: >10,000 at 532nm

  • u Acquisition speed: >10Hz typical

  • u **HF-8999-532-AUTO is specifically designed for Brillouin scattering and includes a multi-pass etalon for 532nm elastic scattering suppression.


  • Options

  • u MMF input with a 10um slit, SMF input with no slit is standard

  • u Low resolution mode, covers the total range with 0.2nm resolution

  • u Camera Options; 

    • ØCMOS for laser characterization, passive element characterization, Brillouin, Raman and solar spectroscopy

    • ØCCD for low light applications (non -scanning of Brillouin biological samples)

    • ØScientific CMOS for low light applications requiring fast acquisition

    • ØICCD for applications requiring gating (LIBS)

    • ØUV C-MOS with good quantum efficiency down to 260nm


  • Features

  • u FAST, No moving parts (single shot laser spectrum analysis)

  • u Sub picometer resolution

  • u Fiber optic input

  • u Quick data acquisition and export

  • u Simple USB interface

  • u LabView Drivers


  • Light sources characterization

  • u Lasers of all types

  • u Single shot pulsed laser spectrum 

  • u Super luminescent diodes

  • u Gas discharge lamps, etc


  • Spectroscopy

  • u Plasma spectroscopy

  • u High-precision gas spectroscopy

  • u Brillouin or Raman spectroscopy

  • u Femtosecond comb fingerprinting spectroscopy

  • u Spectral-domain optical coherence tomography, etc

  • u Solar spectroscopy

  • u Astronomical spectroscopy

  • u Ultra low frequency Raman

  • u Undergraduate physics and chemistry laboratories

    • ØZeeman splitting

    • ØHyperfine magnetic structure of elements

    • ØHydrogen structure

    • ØDoppler shift of Fraunhofer lines due to sun rotation


  • Passive components characterization

  • u Notch filters

  • u Etalons

  • u Fiber Bragg gratings, etc