Gemini Interferometer
GEMINI is an ultra-stable, compact interferometer that has been designed to be added to your cutting-edge setup to extract the spectral content of any light source, coherent or not.
Description:
This novel interferometer guarantees very high robustness and stability between the two generated replicas of light. It overcomes the drawbacks of using monochromators, having:
• High throughput, having no entrance slit (10 mm clear aperture)
• User adjustable spectral resolution without affecting throughput
• An ultra-broadband spectral coverage (250 nm to 5000 nm)
• Easy to align and plug&play
• A compact footprint (10 x 11 x 6 cm)
The exceptional performances of this device can be exploited in many different applications, such as:
-
Time- and Frequency-resolved Fluorescence
-
Coherent Raman Spectroscopy
-
Pump-probe Spectroscopy
-
Fluorescence Microscopy on Single Molecules
Specifications:
• High throughput that allows high sensitivities
• ≈1 attosecond stability between the two replicas of light
• Fast scans (<1 sec.)
• Scan range selectable by the user
• Compact and low-cost
• Insensitive to vibrations
Downloads:
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Summary Box:
GEMINI is an ultra-stable, compact interferometer that has been designed to be added to your cutting-edge setup to extract the spectral content of any light source, coherent or not.
Description:
This novel interferometer guarantees very high robustness and stability between the two generated replicas of light. It overcomes the drawbacks of using monochromators, having:
• High throughput, having no entrance slit (10 mm clear aperture)
• User adjustable spectral resolution without affecting throughput
• An ultra-broadband spectral coverage (250 nm to 5000 nm)
• Easy to align and plug&play
• A compact footprint (10 x 11 x 6 cm)
The exceptional performances of this device can be exploited in many different applications, such as:
-
Time- and Frequency-resolved Fluorescence
-
Coherent Raman Spectroscopy
-
Pump-probe Spectroscopy
-
Fluorescence Microscopy on Single Molecules
Specifications:
• High throughput that allows high sensitivities
• ≈1 attosecond stability between the two replicas of light
• Fast scans (<1 sec.)
• Scan range selectable by the user
• Compact and low-cost
• Insensitive to vibrations
Downloads: