Shelyak LISA Near-Infrared Conversion Kit
- Extends Spectral Range to 650-1000nm
- Optimized for Near-Infrared (NIR) Spectroscopy
- Replaces Camera Ring to Correct NIR Chromatism
- Adds an Order Filter to Prevent Spectral Overlap
Transform your Shelyak LISA spectrograph's standard visible range of 400-700nm for near-infrared work, extending its reach to 1000nm with this dedicated conversion kit. By re-calibrating the optical path for the 650-1000nm band, you gain access to the spectral signatures of cooler stars and other phenomena with prominent features beyond the visible spectrum.
The standard LISA spectrograph is engineered for high-resolution analysis in the visible spectrum from 400-700nm. This kit modifies the instrument to perform in the near-infrared, shifting its optimized operational window to cover the 650-1000nm range. This conversion allows you to investigate the spectral features of M-type stars, carbon stars, and Be stars with prominent lines in the near-IR.
A successful conversion to near-infrared requires specific optical corrections. Two critical components achieve this: a new, angled camera ring corrects for chromatism inherent to longer wavelengths, while an included order filter prevents the overlapping of spectral orders to ensure clean, unambiguous data. Please note that the manufacturer describes the installation as a meticulous operation requiring time and precision, intended for users comfortable making fine adjustments to their equipment.
This kit's function is to convert a standard Shelyak LISA spectrograph, originally designed for the visible spectrum (400-700nm), into an instrument optimized for near-infrared spectroscopy in the 650-1000nm range.
The kit modifies the optical path in two key ways. It replaces the standard camera ring with an angled one to correct for chromatic aberration in the near-infrared, and it adds an order filter to eliminate spectral order overlap, which can contaminate data at these wavelengths.
Yes. The converted instrument's optimized range begins at 650nm, placing the critical Hydrogen-alpha emission line at 656.3nm well within its observational capability. Your LISA will remain a powerful tool for studying objects with strong H-alpha signatures.
This range is excellent for studying cooler stars like M-type red dwarfs and carbon stars, which exhibit strong molecular absorption bands (e.g., Titanium Oxide) in the near-IR. It is also ideal for observing the Paschen series of hydrogen lines in the spectra of Be stars.
The manufacturer states that the conversion is a "meticulous operation, requiring time and precision." This kit is recommended for users who are confident in their ability to make precise mechanical adjustments to sensitive optical instruments. It is not a quick, field-swappable accessory.
The conversion is not designed for rapid or frequent changes between visible and NIR configurations. Reverting the LISA spectrograph back to its original 400-700nm visible-light optimization would require a full reversal of the meticulous installation process.
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