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CY8277 Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing

Catalog No. CY8277
Material Ti3+: Al2O3
Shape Rectangular

Stanford Advanced Materials (SAM) is a proven leader in advanced materials solutions, providing stable, high-quality products to a wide range of industries. Our Ti:Sapphire (Titanium-doped Sapphire Crystal), measuring 3 x 3 x 20 mm and impeccably double-sided polished, exemplifies our commitment to precision and reliability. Leveraging cutting-edge technology and rigorous quality control, we consistently deliver materials that meet the strictest performance requirements. Whether for industrial lasers, medical applications, or scientific research, our titanium-doped sapphire crystals offer optimal optical transmission and durability. Partner with SAM to experience unparalleled expertise and dependable support for all your advanced material needs.

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Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing
Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing
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Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing Description

Experience superior performance and reliability with our Ti:Sapphire (Titanium-doped Sapphire) Crystal, measuring 3 × 3 × 20 mm and meticulously polished on both sides for enhanced optical clarity. Renowned for its wide tunable range and excellent thermal conductivity, this crystal is ideally suited for ultrafast laser applications, spectroscopy, and other precision optical systems. Its high damage threshold and stable output make it a top choice for research institutions, industrial laboratories, and academic environments.

Manufactured to the most stringent quality standards, each crystal undergoes rigorous inspection and testing to verify optimal doping concentration, minimal scatter losses, and precise dimensions. Count on this Ti:Sapphire Crystal for reliable performance, minimal interference, and the uncompromising quality demanded by modern photonics research and development.

Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing Applications

Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, featuring double-sided polishing, is a widely prized gain medium in advanced optics. Known for its broad tunable range, high thermal conductivity, and exceptional durability, this crystal offers versatility and stability across multiple systems. Its robust nature and transparent surfaces ensure precise beam control and efficient laser output.

1. Industrial Applications

·         High-Power Laser Systems: Ideal for laser cutting and welding due to its durability and tunable wavelength range.

·         Optical Pumping: Suitable for generating stable, high-intensity beam outputs in manufacturing processes.

2. Research Applications

·         Ultrafast Spectroscopy: Facilitates precise pulse generation and control for time-resolved studies.

·         Nonlinear Optics: Enables advanced frequency conversion experiments owing to its broad gain bandwidth.

3. Commercial Applications

·         Medical Laser Equipment: Offers reliable performance in diagnostic and therapeutic laser systems.

·         Precision Measurement Tools: Delivers consistent optical output critical for high-resolution imaging devices.

Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing Packaging

Each Ti:Sapphire crystal is placed in custom protective foam within a robust container, safeguarding it from impact. It is vacuum-sealed with anti-static sleeves for additional protection against dust and contaminants. A controlled, low-humidity environment ensures the crystal’s longevity, shielding it from moisture and temperature fluctuations. Optional custom labeling, alternative sizes, and unique packaging configurations are available upon request to fit specific handling and storage requirements.

Packaging: Vacuum sealed, Wooden Box, or Customized.

Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing FAQs

Q1: What are the key material properties of Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing ?

A1: Ti:Sapphire (Titanium-doped Sapphire) is known for its high thermal conductivity, wide tunable emission range (660–1180 nm), and excellent optical quality. This crystal’s doping concentration typically ranges from 0.06% to 0.25% Ti₂O₃, providing strong fluorescence and broad absorption around 490 nm. It also offers exceptional mechanical strength (Mohs hardness 9) and a refractive index of approximately 1.76. The double-sided polishing ensures minimal surface scatter.

Q2: How should this product be handled and stored?

A2: Due to its high brittleness and precision surfaces, Ti:Sapphire crystals should be handled with clean, lint-free gloves and stored in a dust-free container. Keep them away from moisture, temperature extremes, and potential contaminants. Mechanical shock, such as dropping or excessive vibration, can damage the crystal’s polished faces. It is also recommended to avoid prolonged exposure to direct sunlight or high-intensity UV sources.

Q3: Which quality standards and certifications apply to Ti:Sapphire (Titanium-doped Sapphire Crystal) 3 x 3 x 20 mm, Double-sided Polishing ?

A3: Ti:Sapphire crystals typically meet stringent ISO 9001 manufacturing standards, with strict control of doping concentration, crystal orientation, and dimensional tolerances. Many suppliers also follow RoHS and REACH guidelines for environmental compliance. Polishing quality is often verified using interferometry to ensure minimal surface roughness. In addition, laser-grade Ti:Sapphire crystals may carry certifications from organizations such as MIL-STD or ANSI to confirm performance and reliability.

Related Information

1. Manufacturing Process

Molding Ti:Sapphire crystals into precise 3 x 3 x 20 mm dimensions requires meticulously monitoring the pull rate and thermal gradients during the Czochralski process. This approach ensures consistently high crystalline quality and maintains the uniform distribution of titanium ions throughout the sapphire structure.

Tailoring the surfaces through double-sided polishing involves multiple stages of fine abrasion and chemical treatments. This process effectively reduces subsurface damage while enhancing the crystal’s optical qualities, resulting in minimal scattering and higher overall transparency.

2. Applications in Advanced Industries

Scientific institutions utilize Ti:Sapphire crystals for ultrafast laser systems that demand high peak power and short pulse durations. The standard 3 x 3 x 20 mm format dovetails neatly with complex optical setups, making the crystals a popular choice for tasks such as multiphoton microscopy and time-resolved spectroscopy.

Industries focused on precision measurement and imaging also benefit from the reduced scattering afforded by double-sided polishing. Applications in semiconductor inspection and advanced manufacturing leverage this crystal’s superior thermal stability and high gain characteristics, enabling accurate data acquisition and efficient light amplification.

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