• Glan Laser Prisms work well in high performance, high power applications.
  • Glan Taylor and Glan Thompson Prisms provide high extinction ratios.
  • Beamsplitting Thompson Prisms split the s- and p- components.
  • Beam displacers shift the s- and p- components.
  • Wollaston Prisms diverge the s- and p- components.
  • Dichroic polarisers are cost effective and convenient.
  • Quartz waveplates provide controlled retardation.
  • Quartz depolarisers scramble the incoming beam polarisation.
  • Mica waveplates provide controlled retardation over a broadband region.
  • Mid-IR polarisers have similar performance to Glan laser, but are water band absorption free. These polarisers withstand higher powers and allow you to detect in the water band range.
  • Various birefringent materials are used in optical polarisation devices. Calcite polarisers from Laser 2000 are made with a very high grade of optical quality natural calcite crystals, which exhibit only very slight internal striae.
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WPM-40-4P

Mica Waveplate 40mm Diameter λ/4

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WPM-50-2P

Mica Waveplate 50mm Diameter λ/2

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WPM-50-4P

Mica Waveplate 50mm Diameter λ/4

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WPPB-06-14SN

Wollaston Prism 15×14mm Wavelength Range 190 - 3500nm

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WPPB-08-16SN

Wollaston Prism 25.4×16mm Wavelength Range 190 - 3500nm

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WPPB-10-18SN

Wollaston Prism 25.4×18mm Wavelength Range 190 - 3500nm

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WPPB-15-23SN

Wollaston Prism 30×23mm Wavelength Range 190 - 3500nm

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WPPB-20-28SN

Wollaston Prism 38×28mm Wavelength Range 190 - 3500nm

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WPPC-06-14SN

Wollaston Prism 15×14mm Wavelength Range 350 - 2300nm

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WPPC-08-16SN

Wollaston Prism 25.4×16mm Wavelength Range 350 - 2300nm

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WPPC-10-18SN

Wollaston Prism 25.4×18mm Wavelength Range 350 - 2300nm

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WPPC-15-23SN

Wollaston Prism 30×23mm Wavelength Range 350 - 2300nm

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