Wollaston Prisms

WPPB - WPPC

Wollaston Prisms
In stock
SKU
WPPB - WPPC
It is a prism for separating the incident beam into two linearly polarized beams with orthogonal polarizing direction. Used in the optical system of a phase-contrast microscope.
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i
Wollaston Prism 15×14mm Wavelength Range 350 - 2300nm
WPPC-06-14SN
6-12 weeks
$473.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 350 - 2300nm
Extinction ratio <5×10-5
Separation angle (first Wavelength) 22.5°(at 350nm)
Separation angle (second Wavelength) 19°(at 980nm)
Separation angle (third Wavelength) 16.7°(at 2300nm)
φA 6mm
φD×L 15×14mm
i
Wollaston Prism 25.4×18mm Wavelength Range 190 - 3500nm
WPPB-10-18SN
6-12 weeks
$946.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 190 - 3500nm
Extinction ratio <5×10-6
Separation angle (first Wavelength) 27°(at 190nm)
Separation angle (second Wavelength) 16°(at 800nm)
Separation angle (third Wavelength) 17°(at 3500nm)
φA 10mm
φD×L 25.4×18mm
i
Wollaston Prism 25.4×16mm Wavelength Range 350 - 2300nm
WPPC-08-16SN
6-12 weeks
$578.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 350 - 2300nm
Extinction ratio <5×10-5
Separation angle (first Wavelength) 22.5°(at 350nm)
Separation angle (second Wavelength) 19°(at 980nm)
Separation angle (third Wavelength) 16.7°(at 2300nm)
φA 8mm
φD×L 25.4×16mm
i
Wollaston Prism 30×23mm Wavelength Range 190 - 3500nm
WPPB-15-23SN
6-12 weeks
$1,502.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 190 - 3500nm
Extinction ratio <5×10-6
Separation angle (first Wavelength) 27°(at 190nm)
Separation angle (second Wavelength) 16°(at 800nm)
Separation angle (third Wavelength) 17°(at 3500nm)
φA 15mm
φD×L 30×23mm
i
Wollaston Prism 15×14mm Wavelength Range 190 - 3500nm
WPPB-06-14SN
6-12 weeks
$578.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 190 - 3500nm
Extinction ratio <5×10-6
Separation angle (first Wavelength) 27°(at 190nm)
Separation angle (second Wavelength) 16°(at 800nm)
Separation angle (third Wavelength) 17°(at 3500nm)
φA 6mm
φD×L 15×14mm
i
Wollaston Prism 25.4×16mm Wavelength Range 190 - 3500nm
WPPB-08-16SN
6-12 weeks
$683.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 190 - 3500nm
Extinction ratio <5×10-6
Separation angle (first Wavelength) 27°(at 190nm)
Separation angle (second Wavelength) 16°(at 800nm)
Separation angle (third Wavelength) 17°(at 3500nm)
φA 8mm
φD×L 25.4×16mm
i
Wollaston Prism 38×28mm Wavelength Range 190 - 3500nm
WPPB-20-28SN
6-12 weeks
$1,860.00
Material α-BBO , Calcite
Transmitted wavefront distortion λ/4
Coating Both surfaces ; MgF2 single-layer antireflection coating
Laser Damage Threshold 0.3J/cm2 (Laser pulse width ; 10ns )
Surface Quality (Scratch-Dig) 20-10
Wavelength Range 190 - 3500nm
Extinction ratio <5×10-6
Separation angle (first Wavelength) 27°(at 190nm)
Separation angle (second Wavelength) 16°(at 800nm)
Separation angle (third Wavelength) 17°(at 3500nm)
φA 20mm
φD×L 38×28mm

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◦Outgoing beam is emitted with deviation. In this case, the emitted beams are in opposite directions depending on the orientation of polarization.
◦A single-layer anti-reflection coating has been applied on the surface of the Wollaston prism to proved higher transmittance.

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