BaMgF4 | Infrared Crystal

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The BaMgF4 Infrared Crystal is a premier material specifically engineered for high-performance UV and Vacuum Ultraviolet (VUV) applications. With a short UV cut-off wavelength of 125nm and excellent beam quality, it is the ideal choice for quasi-phase matching (QPM) and deep UV laser production. Its superior stability makes it a cornerstone for advanced optical and memory materials.

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Description

BaMgF4 | High-Performance Infrared Crystal for UV Applications

The BaMgF4 Infrared Crystal stands out as one of the most versatile materials currently available for ultraviolet technology. This crystal provides exceptional performance in environments where spectral precision is mandatory. Consequently, it has become a preferred solution for researchers working in the VUV spectrum, offering a unique combination of stability and tunable output.

🛡️ Superior Optical Stability and Quality

The BaMgF4 Infrared Crystal is characterized by its high beam quality and robust physical properties. It maintains excellent stability under intense radiation, which is critical for long-term optical experiments. Furthermore, the crystal is continuously adjustable across the UV and VUV ranges. This flexibility allows engineers to fine-tune laser outputs to meet specific wavelength requirements without sacrificing beam integrity.

🔬 Advanced Vacuum UV (VUV) Capabilities

One of the most significant advantages of this material is its exceptionally short UV cut-off wavelength of 125nm. This specific property makes it uniquely applicable to:

  • Quasi Phase Matching (QPM): Essential for generating efficient vacuum UV lasers.

  • High-Resolution Spectroscopy: Enables precise rate spectroscopy by minimizing interference.

  • UV Lithography: Provides the clarity and durability needed for micro-nano processing decomposition.

  • Deep UV Laser Production: Facilitates double-frequency processes to produce high-intensity deep UV beams.

🔐 Built for Cutting-Edge Medical and Industrial Use

Because the BaMgF4 Infrared Crystal offers such reliable performance, it is now widely utilized across various high-tech categories. In the medical field, it supports advanced diagnostic tools that require precise UV wavelengths. Additionally, in the industrial sector, it plays a vital role in high-precision micro-processing. Its role as a “memorized material” also highlights its potential in specialized data storage and advanced laser research.

Why Choose BaMgF4?

Designed to maximize the efficiency of your optical system, the BaMgF4 Infrared Crystal focuses on applications where standard materials fail. By providing a broad transparency range down to 125nm and maintaining high beam quality, it remains the gold standard for professionals who require precise, high-stability ultraviolet components.


Main Applications

  • Deep UV Lasers: Utilizing double-frequency production for high-intensity output.

  • Optical & Laser Materials: Serving as the core component in advanced laser resonators.

  • Micro-Nano Processing: Enabling high-resolution decomposition and lithography.

  • Memory Materials: Applied in specialized storage and optical computing research.

  • Medical Categories: Supporting next-generation UV-based medical instruments.


Technical Specifications Summary

Feature Specification
Material Type BaMgF4 Infrared Crystal
UV Cut-off Wavelength 125nm
Adjustment Range Continuously adjustable (UV/VUV)
Key Advantage High Beam Quality & Stability
Special Function Quasi Phase Matching (QPM) Support

Technical Specifications

Nonlinear optical property

Double frequency produce deep UV lasers

Transmission range:125-13000nm

Optical material & Laser material

Ferroelectricity

Memorized material

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