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  • An Improved Wire Grid Polarizer For Thermal Infrared Applications
    Moxtek has developed a high contrast IR polarizer on silicon suitable for long wavelength thermal IR applications using. our aluminum nanowire, large area patterning capabilities. Between 7 and 15 microns, our 144 nm pitch polarizers transmit better than 70% of the passing polarization state
  • Society for Information Display: The Display Applications and Physics of the ProFlux Wire Grid Polarizer
    involved enables a polarizer technology that performs above the expectations of previous researchers in the field.
  • The Display Applications and Physics of the ProFlux (R) Wire-Grid Polarizer
    technology described. here enables new solutions to difficult and fundamental problems. in the display industry. It is applicable and valuable in all types of. Liquid-Crystal (LC) displays or other applications of polarization. in information display technology.
  • Development and Application of a MHz Frame Rate
    the third. amplifier (with a 75 mm focal length lens) and is coupled to the final three amplifiers using a quarter wave plate/thin film. polarizer combination. The PCM is comprised of a 25.4 mm dia. by 101.6 mm long optical cell, filled with a 1.28 index of. refraction inert liquid (3M Flourinert
  • Nanowire Grid Polarizers for Mid- and Long-Wavelength Infrared Applications
    High contrast wire grid polarizers on silicon suitable for mid-wavelength infrared (MWIR) and long-wavelength infrared (LWIR) applications have been developed using wafer-scale aluminum nanowire patterning capabilities. The 144 nm. pitch MWIR polarizer typically transmits better than 95%
  • Variable Attenuator for Lasers
    This application note details a simple and cost effective solution for the continuous attenuation of laser output power. The attenuator kit described is based on a half waveplate and polarizer. It is suitable for attenuation of a linearly polarized laser beam with a wavelength in the 690 nm -1040
  • Computer Controlled Variable Attenuator for Lasers (.pdf)
    This application note describes a closed loop computer controlled variable attenuator (figure 1) for the control of output power of a laser. It is based on the combination of a 1/2 wave-plate and polarizer. The algorithm used to control power operates in a closed loop with Proportional Integral
  • Skew Ray Analysis
    system shown. ./c5606329-3129-49bb-a6af-dd23e6d29e8f Application Note. Skew Ray Analysis. Skew Rays. MEASURING SKEW RAYS. In this case, polarizer performance over a light cone is. often improperly simulated by a configuration similar to. Measurement of polarizer performance is an essential step

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