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New Rare Earth Ions Doped Gadolinium Scandate Laser Crystal | RE:GdScO3 Crystal-Heeger Materials Inc View larger

Rare Earth Ions Doped Gadolinium Scandate Laser Crystal | RE:GdScO3 Crystal

HM2780

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Rare Earth Ions Doped Gadolinium  Scandate (RE: GdScO3) Laser Crystal offers excellent optical properties, high efficiency, and stability for high-power and tunable laser systems. Heeger Materials (HM) provides high-quality RE: GdScO3 Laser Crystal for reliable performance in advanced laser applications.

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Data sheet

Diameter2-30 mm
Density6.6 g/cm³
Melting Piont~2100 ℃

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Gadolinium scandate (GdScO₃) crystals, belonging to the orthorhombic system with space group Pnma, exhibit greater distortion in the oxygen polyhedra around Gd ions compared to other orthorhombic oxides. This results in a stronger lattice field. With a high refractive index, GdScO₃ crystals effectively mitigate thermally induced birefringence, making them suitable for laser applications.

Rare Earth Ions Doped Gadolinium Scandate Laser Crystal REGdScO3 Crystal

 RE: GdScO3 Laser Crystal Properties

Crystal Structure and Unit-Cell Parameters

Orthorhombic system, a = 5.45 Å, b = 5.75 Å, c = 7.93 Å

Density

6.6 g/cm³

Melting Point

~2100°C

Thermal Conductivity

5.33 W/(mK) (a) 5.54 W/(mK) (c)

Coefficient of Thermal Expansion

10.9×10⁻⁶ /°C

Maximum Phonon Energy

480 cm⁻¹

Refractive Index @ 532 nm

2.11

Diameter Range

2 - 30mm

Length Range

2 - 50mm

Cutting Method

a - cut, b - cut or c - cut

 

Tm:GdScO₃

Ho:GdScO₃

Yb:GdScO₃

Absorption Peak Wavelength

793 nm

1975 nm

984 nm

Absorption Cross - Section

1.48×10⁻²⁰ cm²(E//a)
1.48×10⁻²⁰ cm²(E//b)
1.25×10⁻²⁰ cm²(E//c)

0.95×10⁻²⁰ cm²

2.32×10⁻²⁰ cm²

Fluorescence Lifetime

3.68 ms

6.13 ms

0.551 ms

Laser Wavelength

~1975 nm

2025 nm

1063.9 nm

Emission Cross - Section

0.23×10⁻²⁰ cm² (E//X)
0.23×10⁻²⁰ cm² (E//Y)
0.28×10⁻²⁰ cm² (E//Z)

0.49×10⁻²⁰ cm²

0.4×10⁻²⁰ cm²

RE: GdScO3 Laser Crystal Applications

  • High-Power Laser Systems: RE: GdScO3 Laser Crystals are ideal for high-power laser systems, providing efficient performance and stable laser output due to their high refractive index and thermal stability.
  • Tunable Laser Applications: The crystal’s excellent optical properties make it suitable for tunable laser systems, especially in applications that require precise control over the laser wavelength.
  • Scientific Research: RE: GdScO3 is used in scientific research for spectroscopy and other high-precision optical measurements, thanks to its minimal thermally-induced birefringence and high stability.
  • Laser Diode Pumped Systems: Its high efficiency and strong lattice field make RE: GdScO3 an excellent material for laser diode-pumped systems, improving performance in a variety of industrial and medical laser applications.
  • Medical Laser Technologies: The crystal’s thermal and mechanical properties make it well-suited for medical lasers, including those used in dermatology, ophthalmology, and surgical applications requiring high-quality, stable output.

RE: GdScO3 Laser Crystal Packing And Shipping

The Rare Earth Ions Doped Gadolinium Scandate (RE: GdScO3) Laser Crystal will be securely packaged in sturdy containers with cushioning materials to prevent any movement or damage during shipping. This careful packaging ensures that the product arrives in perfect condition, maintaining its high-quality standards throughout the delivery process.

Rare Earth Ions Doped Gadolinium Scandate (RE: GdScO3) Laser Crystal Packing

Where to Buy RE: GdScO3 Laser Crystal in Bulk?

Heeger Materials Inc., a professional supplier and manufacturer of high-quality Laser Crystals including Rare Earth Ions Doped Gadolinium Scandate (RE: GdScO3) Laser Crystal, leverages extensive expertise in supply and export to offer competitive prices. We provide customized solutions to meet specific requirements, ensuring exceptional quality and customer satisfaction.

Heeger Materials Inc. was established in 2016 in Colorado, USA. We specialize in premium-grade metals, alloys, ceramics, powders, and other materials catering to research, development, and large-scale industrial production in scientific and industrial sectors.

 

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