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New Titanium Doped Sapphire Laser Crystal | Ti:Al2O3 Laser Crystal-Heeger Materials Inc View larger

Titanium Doped Sapphire Laser Crystal | Ti:Al2O3 Laser Crystal

HM2781

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Titanium Doped Sapphire (Ti: Al2O3) Laser Crystal is an efficient material for high-intensity and tunable laser systems, offering excellent optical and thermal properties. Heeger Materials (HM) provides high-quality Ti: Al2O3 Laser Crystal for reliable performance in advanced laser applications.

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Data sheet

Diameter5 - 150mm
Density3.98 g/cm³
MaterialsTi: Al2O3

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Titanium-doped Sapphire (Ti: Al2O3) Laser Crystal belongs to the corundum crystal system and features a hexagonal structure. It offers a wide transparency range from 200 to 5000 nm, making it suitable for both pulsed and continuous-wave laser systems. Ti: Al2O3 has low phonon energy, a high laser damage threshold, and a large emission cross-section, ensuring stable high-power laser output. Its ability to be doped with titanium ions allows for tunability and efficiency in a variety of laser applications. Heeger Materials (HM) provides high-quality Ti: Al2O3 Laser Crystal for reliable performance in advanced laser technologies.

Titanium Doped Sapphire Laser Crystal | Ti:Al2O3 Laser Crystal

Titanium Doped Sapphire Laser Crystal Properties

Ti₂O₃ Concentration

0.06 - 0.5 wt%

Absorption Range / Absorption Peak Position

400 - 600 nm / 488nm

Absorption Coefficient (α₄₉₀nm)

1.0 - 7.5cm⁻¹

FOM Value

100 - 300

Tuning Range / Emission Peak

660 - 1050 nm / 795nm

Refractive Index

1.76 @ 800 nm

Fluorescence Lifetime

3.2 μs (T = 300 K)

Diameter Size

5 - 150mm

Length

1 - 80mm

Cutting Method

flat or Brewster ends or custom-specified

Crystal Orientation

[0001] normal to the rod axis

Flatness

0.1 - 0.2 λ @633nm

Parallelism

10 arcsec

Surface Finish

10/5 scratch/dig

Crystal Structure and Unit-Cell Parameters

Hexagonal, a = 4.748, c = 12.957

Thermal Conductivity

0.105 cal/cm/sec/°C

Mohs Hardness

9 Mohs

Density

3.98 g/cm³

Titanium Doped Sapphire Laser Crystal Applications

  • High-Power Laser Systems: Ti: Al2O3 is ideal for high-power laser systems, providing excellent thermal stability and high damage thresholds, making it suitable for industrial and scientific applications.
  • Tunable Lasers: With its broad transparency range, Ti: Al2O3 is used in tunable laser systems, enabling precise control of laser wavelengths for spectroscopy, research, and medical treatments.
  • Pulsed Lasers: The crystal's low phonon energy and high efficiency make it an excellent choice for pulsed lasers, offering high-intensity outputs for applications like laser drilling, materials processing, and medical surgery.
  • Solid-State Lasers: Ti: Al2O3 is a key material in solid-state laser technologies, where it serves as a gain medium in lasers that require high efficiency and tunability.
  • LIDAR Systems: Ti: A l2O3 is used in Light Detection and Ranging (LIDAR) systems, where its ability to produce precise laser pulses at varying wavelengths makes it suitable for distance measurement and environmental mapping.

Titanium Doped Sapphire Laser Crystal Packing And Shipping

Titanium Doped Sapphire (Ti: Al2O3) 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.

Titanium Doped Sapphire (Ti: Al2O3) Laser Crystal Packing

Where to Buy Titanium Doped Sapphire Laser Crystal in Bulk?

Heeger Materials Inc., a professional supplier and manufacturer of high-quality Laser Crystals including Titanium-doped Sapphire (Ti: Al2O3) 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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