Exceptional Spectral Range
Useful transmission from approximately 0.11 to 7.5 µm, depending on optical grade, thickness, surface finish, and coating.
A durable uniaxial fluoride crystal offering strong ultraviolet-to-infrared transmission, low refractive index, and excellent environmental resistance for spectroscopy, laser, polarization, and space-optics applications.

Magnesium fluoride combines broad spectral transmission with excellent chemical resistance, low refractive index, and good thermal durability. It is widely selected for UV windows, polarization optics, spectroscopy, space systems, and durable protective optical components.
Useful transmission from approximately 0.11 to 7.5 µm, depending on optical grade, thickness, surface finish, and coating.
Low index reduces uncoated Fresnel reflection and supports high transmission across broad wavelength bands.
Low refractive index and useful dispersion characteristics support broadband optical and polarization designs.
MgF₂ is a uniaxial birefringent crystal, making orientation important for polarization-sensitive designs.
Representative values for optical-grade magnesium fluoride. Final values vary by crystal grade, wavelength, orientation, thickness, supplier specification, and test method.
| Chemical Formula | MgF₂ |
|---|---|
| Crystal Structure | Tetragonal, uniaxial fluorite structure |
| Density | Approximately 3.15 g/cm³ |
| Knoop Hardness | Approximately 415 |
| Young’s Modulus | Approximately 138 GPa |
| Poisson’s Ratio | Approximately 0.27 |
| Thermal Expansion | Anisotropic; approximately 9–14 × 10⁻⁶/K depending on crystal axis |
| Melting Point | Approximately 1261°C |
| Transmission Range | Approximately 0.11–7.5 µm, orientation, grade, and thickness dependent |
|---|---|
| Refractive Index nd | Approximately 1.38 |
| Abbe Number Vd | Approximately 106 |
| Birefringence | Uniaxial birefringent crystal; orientation should be specified for polarization-sensitive designs |
| Reflection Loss | Low relative to many optical materials due to low refractive index |
| Coating Compatibility | UV, VIS, NIR, MWIR AR, beamsplitter, and custom coatings |
| Available Grades | VUV, UV, optical, polarization, and infrared grades |
MgF₂ provides broad spectral performance and strong environmental durability. Actual transmission depends on crystal orientation, grade, thickness, surface condition, and coating design.
| Property | Sapphire | BK7 | Fused Silica | MgF₂ |
|---|---|---|---|---|
| Deep-UV Performance | Very Good | Limited | Excellent | Excellent |
| Infrared Reach | Good | Limited | Limited | Excellent |
| Chromatic Dispersion | Moderate | Low | Low | Very Low |
| Scratch Resistance | Excellent | Moderate | Good | Low |
| Thermal Expansion | Low | Moderate | Very Low | Higher |
COE Sapphire supports prototype, low-volume, and repeat production of precision magnesium fluoride optics with controlled fabrication, coating, and inspection.
Controlled cutting, edging, beveling, drilling, and custom geometry fabrication for an anisotropic optical crystal.
Precision flat, spherical, and custom polishing with process control to control surface quality, crystal orientation, and edge integrity.
UV, visible, NIR, MWIR AR, beamsplitter, and application-specific multilayer coatings.
Dimensional inspection, interferometry, surface inspection, transmission verification, and documentation.
Provide optical grade, operating wavelength, dimensions, tolerances, surface quality, flatness or power, wedge or parallelism, clear aperture, edge treatment, coating, quantity, and environmental requirements.
Discuss Your SpecificationMgF₂ is widely used for UV windows, polarization optics, spectroscopy, durable protective windows, space optics, and broadband anti-reflection systems.
High-quality magnesium fluoride can provide useful transmission from the deep ultraviolet into the infrared, commonly cited at approximately 0.11–7.5 µm depending on grade and thickness.
Both materials provide strong UV performance. MgF₂ extends farther into the infrared and has lower dispersion, while fused silica is generally tougher, has far lower thermal expansion, and is easier to process.
MgF₂ is naturally birefringent because of its uniaxial crystal structure. Crystal orientation should be specified for polarization-sensitive applications.
Yes. MgF₂ is harder and more environmentally durable than many fluoride crystals, but crystal orientation and edge design still require care, so protective edge design, clean handling, careful mounting, and controlled cleaning are recommended.
Yes. MgF₂ is compatible with UV, visible, near-infrared, mid-infrared, beamsplitter, and custom multilayer coatings when coating design and process conditions are matched to the substrate.
Yes. COE Sapphire can manufacture custom windows, lenses, prisms, wedges, apertures, holes, edge treatments, and application-specific tolerances.
Please provide material grade, wavelength range, dimensions, tolerances, surface quality, flatness or power, wedge or parallelism, clear aperture, coating, quantity, and inspection requirements.
Send us your drawing, specification, or application requirements.