Green LuAG, Asscher Cut, 39.01 Carats
Green LuAG, Asscher Cut, 39.01 Carats
Green LuAG, Asscher Cut, 39.01 Carats
Green LuAG, Asscher Cut, 39.01 Carats

Green LuAG, Asscher Cut, 39.01 Carats

SQO248

Regular price$1,350.00
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💚🍏💚 This repurposed scintillator gemstone is cut in a substantial size, making it perfect for a statement jewelry piece that will capture everyone's attention! The glowing Asscher cut boasts a distinctive and captivating look. Its architectural design lends itself to creating a stunning and unique Art Deco or modern jewelry piece that you’ll cherish for a lifetime!

DIMENSIONS AND SHAPE

Size: 15.1mm x 15.1mm x 10.37mm

Weight: 39.01  carats

Cut: Asscher

Shape: Square

Clarity: Loupe Clean

Inclusions: None

Treatment:None

 

PHYSICAL PROPERTIES

MOHS hardness: 8.0

Pleochroism: 

Dispersion: 0.025

Density: 6.7

Refractive Index: 1.9

Chemical Formula:Lu3Al5O12


POSSIBLE JEWELRY APPLICATIONS

Pendant, Cocktail Ring, and Show Off To Friends

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🌍 GENERAL MATERIAL DESCRIPTION

  • Material Name:Ce:LuAG
  • Country of Origin : China
  • Growth Method:

Cerium-doped Lutetium Aluminum Garnet (Ce:LuAG) is a phosphor material that has gained significant attention for its industrial applications, especially in the fields of lighting and imaging. As a scintillator, Ce:LuAG is highly effective in converting high-energy radiation into visible light, which makes it particularly valuable in medical imaging systems such as computed tomography (CT) scanners and in security scanning systems. Its excellent light yield and fast decay time enable high-resolution imaging, crucial for accurate diagnostics and security inspections. Additionally, Ce:LuAG is used in LED lighting technology. When combined with blue or ultraviolet LEDs, it produces a bright, white light with good color rendering, making it suitable for various lighting applications where natural light reproduction is desired. This includes high-end, energy-efficient lighting solutions in commercial, medical, and automotive industries. The unique properties of Ce:LuAG, including its stability and radiation hardness, make it an important material in advancing imaging technology and developing efficient lighting solutions.

🏭 SPECIFIC Lot INFORMATION

This material is derived from the leftover edges and upper portions of Ce:LuAG boule.


🧠 Gemology Literature

The articles cited here about lab created gemstones are all open source and chronologically sorted for quick and easy access. Each article comes from either the Journal of Gemmology (JofG) or Gems and Gemmology (G&G) archives.