Alexandrite
Last updated: April 2026
The color-change variety of chrysoberyl, appearing green in daylight and red in incandescent light.
Alexandrite has a specific gravity of 3.73 and a refractive index of 1.746–1.755, with a Mohs hardness of 8.5. It is biaxial +.
Physical & Optical Properties
Measured with a polariscope, a refractometer, a hydrostatic balance, a Chelsea filter, a UV torch, a loupe, a darkfield loupe and a spectroscope — step-by-step for each.
Through the refractometer
Drawn from the refractive index above, on a 1.40–1.81 scale. How to take this reading.
Through the polariscope
Drawn from the optic character and transparency above. A polariscope separates singly refractive, doubly refractive and aggregate; the optic sign needs a conoscope. How to take this reading.
Specific gravity, and what it rules out
Drawn from the specific-gravity range above, against every other species in the table. How to take this reading.
Through the dichroscope
Drawn from the pleochroism above. Two windows that match mean either no pleochroism or the wrong angle — turn the instrument to tell. How the dichroscope compares.
Related: Chrysoberyl Varieties
Key Differentiators
- Dramatic color change
- Strong trichroism
- High hardness
Natural vs. Synthetic
Synthetic alexandrite is commercially available (Flux (Creative Crystals/Inamori), Hydrothermal, Czochralski (pulled), and others). Distinguishing natural from synthetic typically requires microscopic examination of internal features.
- Microscopy (10x loupe): Two- and three-phase fluid inclusions, growth tubes, fine twinning lamellae, irregular stress fractures. No platinum or gas bubbles. Synthetic: Flux: curved flux inclusion clouds, platinum crystal platelets (from growth crucible). Hydrothermal: straight parallel growth lines, two-phase inclusions along growth planes. Czochralski-grown stones show concentric curved growth striae and spherical gas bubbles.
- UV Fluorescence: Inert to weak red-orange under LW and SW. Iron quenches fluorescence. Synthetic: Often stronger, more intense red to orange-red, especially under SW UV. Higher Cr purity and lower Fe content in synthetics enhances response.
- RI / SG: RI 1.746–1.755; SG 3.70–3.78. Note: RI and SG do NOT distinguish natural from synthetic chrysoberyl — use microscopy. Synthetic: Identical range — RI and SG do NOT distinguish natural from synthetic chrysoberyl. Use microscopy.
Loupewise Pro includes a two-phase natural vs. synthetic testing protocol for Alexandrite.
Common Simulants
- Color-change sapphire: Uniaxial negative DR; color shift is typically blue→purple, not green→red; lower dispersion; RI 1.762–1.770.
- Color-change garnet: Isotropic (SR); no dichroism; RI 1.740–1.765 range depending on variety; inert to UV.
- Color-change glass: Isotropic; gas bubbles or swirl marks under loupe; conchoidal fracture; no dichroism.
Commonly Confused With
Commonly confused with: Color-Change Sapphire, Color-Change Garnet, Color Change Glass, Diaspore, Synthetic Color-Change Corundum, Synthetic Spinel.
Treatments
- Fracture Filling (resin/glass)
Related Comparisons
Measurement Guides
Identifying an alexandrite? Loupewise walks through these tests in order — RI, SG, fluorescence, and more.
Try Loupewise Free →Studying for the GIA, FGA, or FEEG practical? Alexandrite is one of the 132 species in Loupewise’s drill and exam pool — practice identifying it from its measured properties under timed exam conditions.
Practice exams →