Experimental Samarium YAG IS a ♻️ Gem cut from
Unused Experimental Growth
Experimental Samarium YAG IS A
Fluorescent Gem
Experimental Samarium YAG IS A
Color Shift Gem
Experimental Samarium YAG IS grown using the
Czochralski method
Experimental Samarium YAG, Hexagon Step Cut, 123.9 Carats - DJEVA
Experimental Samarium YAG, Hexagon Step Cut, 123.9 Carats
Experimental Samarium YAG, Hexagon Step Cut, 123.9 Carats
Experimental Samarium YAG, Hexagon Step Cut, 123.9 Carats
Experimental Samarium YAG, Hexagon Step Cut, 123.9 Carats - DJEVA

Experimental Samarium YAG, Hexagon Step Cut, 123.9 Carats

SQO148

Regular price$2,200.00
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Shipping calculated at checkout.

🍾🍾🍾 Wow! This exceptionally rare, experimental Samarium-doped laser YAG is breathtaking with its champagne color. This color-shifting material exhibits a stunning champagne hue outdoors, thanks to its strong orange fluorescence. This mesmerizing and captivating gemstone would make a fantastic pendant or a standout addition to a collection of rare synthetic gems.

DIMENSIONS AND SHAPE

Size: 30.9mm x 26.57mm x 6.59mm

Weight: 123.9  carats

Cut: Hexagon Step

Shape: Hexagon

Clarity: Loupe Clean

Inclusions: None

Treatment:None

 

PHYSICAL PROPERTIES

MOHS hardness: 8.5

Pleochroism: 

Dispersion: 0.028

Density: 4.6

Refractive Index: 1.83

Chemical Formula:Y3A15O12


POSSIBLE JEWELRY APPLICATIONS

Pendant, Brooch, and Show Off To Friends

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🌍 GENERAL MATERIAL DESCRIPTION

  • Material Name:Sm:YAG
  • Country of Origin : China
  • Growth Method: Czochralski

Samarium-doped yttrium aluminum garnet (YAG) is a synthetic crystalline material that is used in various optical applications due to its unique luminescent properties. This doped YAG combines the robust structural qualities of yttrium aluminum garnet with the specific light-emitting characteristics of samarium ions. When samarium ions are introduced into the YAG crystal lattice, they can absorb and emit light in distinctive wavelength bands, making samarium-doped YAG particularly useful for lasers, phosphors, and optical isolators. Its ability to produce precise wavelengths of light is crucial for applications requiring fine control over light emission, such as in medical lasers, telecommunications, and in the development of efficient lighting solutions. The doping process enhances the crystal's thermal stability and optical efficiency, making it a versatile and reliable material for advanced photonic devices.

🏭 SPECIFIC Lot INFORMATION

We were offered the product from one of our regular suppliers in China that brokers scrap material from various industrial crystal growing factories. We were told this product was produced for experimental testing without any information about the application. It has an extremely strong Orange fluorescence and a really interesting color shift when taking outdoors into sunlight.


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🧠 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.