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Supplier: Thorlabs, Inc.
Description: This Shearing Interferometer can be used with incident beams with Ø5 - Ø10 mm. The interference pattern is sensitive to the beam divergence and can be used to qualitatively determine whether the beam is collimated. The design consists of a wedged optical flat mounted at 45°
- Light Source / Laser Type: HeNe
- Number of Axes: Single
- Orientation: Vertical
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Supplier: Thorlabs, Inc.
Description: This Shearing Interferometer can be used with incident beams with Ø1 - 3 mm. The interference pattern is sensitive to the beam divergence and can be used to qualitatively determine whether the beam is collimated. The design consists of a wedged optical flat mounted at 45° and a diffuser
- Light Source / Laser Type: HeNe
- Number of Axes: Single
- Orientation: Vertical
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Supplier: Thorlabs, Inc.
Description: This Shearing Interferometer can be used with incident beams with Ø25.4 - Ø50 mm. The interference pattern is sensitive to the beam divergence and can be used to qualitatively determine whether the beam is collimated. The design consists of a wedged optical flat mounted at 45°
- Light Source / Laser Type: HeNe
- Number of Axes: Single
- Orientation: Vertical
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Supplier: Thorlabs, Inc.
Description: This Shearing Interferometer can be used with incident beams with Ø10 - Ø25.4 mm. The interference pattern is sensitive to the beam divergence and can be used to qualitatively determine whether the beam is collimated. The design consists of a wedged optical flat mounted at 45°
- Light Source / Laser Type: HeNe
- Number of Axes: Single
- Orientation: Vertical
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Supplier: Thorlabs, Inc.
Description: This Shearing Interferometer can be used with incident beams with Ø2.5 - Ø5 mm. The interference pattern is sensitive to the beam divergence and can be used to qualitatively determine whether the beam is collimated. The design consists of a wedged optical flat mounted at 45°
- Light Source / Laser Type: HeNe
- Number of Axes: Single
- Orientation: Vertical
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Supplier: Thorlabs, Inc.
Description: This interchangable shear plate is designed to be used with incident beam diameters ranging from Ø5 - Ø10 mm. The SI100P's magnetically coupled kinematic design of this plate allows them to be precisely located on the shearing interferometer. Multiple plates are compatible
- Optical Flat Shape: Circular
- Optical Flat Materials: UV grade Fused Silica
- Coating: None
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Interferometry - Wikipedia, the free encyclopedia
??(Redirected from Interferometer) Jump to: navigation, search Figure 1. The light path through a Michelson interferometer
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Shearing interferometer - Wikipedia, the free encyclopedia
The shearing interferometer is an extremely simple means to observe interference and to use this phenomenon to test the collimation of light beams,
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Optipedia: Free optics information from SPIE
radial shear interferometer Ramsden eyepiece Rayleigh resolution criterion reflection reflective beam expander refraction refractive beam expander
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Improved collimation testing with a multiple beam wedge plate...
Improved collimation testing with a multiple beam wedge plate lateral shear interferometer
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Design and fabrication of a variable frequency grating and its...
Design and fabrication of a variable frequency grating and its application as a lateral-shear interferometer having a variable shear
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Measurement of residual wedge angle with a reversal shear...
Measurement of residual wedge angle with a reversal shear interferometer
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Shear Plate Interferometer
Products >> Educational Equipments >> Shear Plate Interferometer The shearing interferometer is an extremely simple method to observe interference.
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Thorlabs - Shearing Interferometer
Spectrometers Fiber Interferometers Shearing Interferometer Fabry-Perot Interferometer Fabry-Perot Interferometer Tutorial
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[19.01 Measurement and mitigation of metrology/starlight...
[19.01 Measurement and mitigation of metrology/starlight static beam shear error in the MAM testbed interferometer
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Final Laboratory Integration and Test of the Keck...
Final Laboratory Integration and Test of the Keck Interferometer Nuller S.L. Crawford, M. M. Colavita, J. I. Garcia, E. R. Ligon, B. Mennesson, C. G.