Crystal Materials – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com/zh Mon, 09 Feb 2026 07:38:43 +0000 zh-Hans hourly 1 https://wordpress.org/?v=6.9.1 https://www.hi-tech-materials.com/wp-content/uploads/2025/05/cropped-微信图片_20240923152541-32x32.png Crystal Materials – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com/zh 32 32 Bismuth Germanate (Bi₄Ge₃O₁₂) Crystal https://www.hi-tech-materials.com/zh/product/bismuth-germanate-bi%e2%82%84ge%e2%82%83o%e2%82%81%e2%82%82-crystal https://www.hi-tech-materials.com/zh/product/bismuth-germanate-bi%e2%82%84ge%e2%82%83o%e2%82%81%e2%82%82-crystal#respond Fri, 25 Apr 2025 08:57:14 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3169
Bismuth germanate (Bi₄Ge₃O₁₂) crystal is a high-density scintillator material recognized for its excellent radiation resistance, strong mechanical stability, and efficient energy conversion. Engineered for high-energy photon detection, it provides superior light output, fast response time, and minimal optical degradation. This material is widely used in medical imaging, radiation detection, high-energy physics experiments, and industrial X-ray applications, ensuring reliable performance in advanced detection and optical systems.
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Product Overview:
Bismuth Germanate (Bi₄Ge₃O₁₂, BGO) crystal is an inorganic material with excellent scintillation properties, commonly used in high-energy physics and medical imaging. The crystal belongs to the cubic crystal system and has high density and good optical properties, enabling it to produce strong fluorescence under excitation from visible light, X-rays, and gamma rays. Due to its high light yield and fast scintillation response, BGO crystals excel in radiation detection and imaging technologies, making them ideal for applications in medical imaging, nuclear physics research, and environmental monitoring.

Key Features:

  • Excellent Scintillation Performance:Produces intense scintillation light when exposed to X-rays and gamma rays, providing highly efficient radiation detection.
  • High Density and Light Yield:With high density and light yield, BGO is ideal for detecting high-energy radiation.
  • Fast Response:Offers short scintillation decay times, making it suitable for imaging and detection systems requiring rapid response.
  • Strong Stability:Maintains stable performance over extended periods of use, even in extreme environmental conditions.

Applications:

  • Radiation Detectors:Widely used in the detection and imaging of X-rays and gamma rays, often found in medical imaging devices like PET scanners.
  • Nuclear Physics Research:Employed in high-energy physics experiments and radiation monitoring, aiding in radiation detection and imaging analysis.
  • Medical Imaging:Used as a high-efficiency scintillator in various medical imaging devices to improve image clarity and resolution.
  • Environmental Monitoring:Utilized for radiation detection in environmental monitoring, helping assess radiation levels and ensure safety.

 

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CdO₄W Crystal (Cadmium Tungstate Crystal) https://www.hi-tech-materials.com/zh/product/cdo%e2%82%84w-crystal-cadmium-tungstate-crystal https://www.hi-tech-materials.com/zh/product/cdo%e2%82%84w-crystal-cadmium-tungstate-crystal#respond Fri, 25 Apr 2025 08:56:10 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3167
Cadmium tungstate (CdWO₄) crystal is a high-performance scintillator material recognized for its excellent light yield, high-density structure, and strong radiation resistance. Engineered through advanced crystallization techniques, it offers efficient X-ray and gamma-ray detection, minimal afterglow effects, and superior optical transparency. This material is widely used in medical imaging, radiation detection, industrial non-destructive testing, and scientific research, ensuring reliable performance in high-energy photon detection systems.
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Product Overview:
Cadmium Tungstate (CdO₄W) crystal is an inorganic material with excellent scintillation properties, widely used in radiation detection, imaging technologies, and high-energy physics experiments. CdO₄W has high density and good optical characteristics, allowing it to produce intense scintillation light when excited by X-rays, gamma rays, and other radiation sources. With good light yield and fast scintillation response, it is commonly used in fields such as high-energy physics, nuclear medicine, and radiation detection.

Key Features:

  • High Light Yield:CdO₄W crystals have high photoluminescent efficiency, making them ideal for high-brightness radiation detection.
  • Fast Response:The crystal has short scintillation decay times, making it suitable for high-frequency radiation detection and imaging.
  • High Density:With high density, CdO₄W efficiently captures and detects high-energy radiation.
  • Excellent Scintillation Performance:It generates intense scintillation light when exposed to X-rays and gamma rays, providing precise radiation signals.

Applications:

  • Radiation Detection:Used for efficient detection of X-rays and gamma rays, widely applied in nuclear medicine, radiation safety, and scientific research.
  • High-Energy Physics Experiments:As a high-energy particle detector, CdO₄W crystal is commonly used in particle physics and nuclear reaction monitoring.
  • Medical Imaging:Applied in medical imaging devices such as PET scanners and CT scanners, offering precise imaging and detection capabilities.
  • Scientific Research:Extensively used in various research applications for radiation detection, imaging analysis, and experimental studies.
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L(Y)SO (Lutetium Yttrium Silicate) Crystal https://www.hi-tech-materials.com/zh/product/lyso-lutetium-yttrium-silicate-crystal https://www.hi-tech-materials.com/zh/product/lyso-lutetium-yttrium-silicate-crystal#respond Fri, 25 Apr 2025 08:54:54 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3165
L(Y)SO (Lutetium Yttrium Silicate) crystal is a high-performance scintillator material known for its excellent light yield, fast decay time, and superior radiation resistance. Engineered through advanced crystallization techniques, it provides high detection efficiency, strong mechanical stability, and broad spectral response. This material is widely used in medical imaging, radiation detection, high-energy physics experiments, and industrial applications, ensuring reliable performance in advanced detection and optical systems.
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Product Overview:
L(Y)SO (Lutetium Yttrium Silicate) crystal is a high-quality scintillator material known for its high density, high light yield, fast decay time, and excellent energy resolution. It has wide application prospects in fields such as nuclear medicine imaging, high-energy physics, and nuclear physics. L(Y)SO crystals are primarily used in the production of γ-ray detectors, especially in Positron Emission Tomography (PET) scanners, where they serve as core detection components. Due to its outstanding performance, L(Y)SO crystal has become a key material in the next generation of nuclear medicine imaging technologies.

Key Features:

  • High Energy Resolution:Provides precise energy detection, enhancing imaging and measurement accuracy.
  • Fast Decay Time:The crystal has an extremely fast decay response, enabling high-speed data acquisition.
  • High Light Yield:Excellent light yield ensures efficient energy conversion in detectors.
  • High Light Output:Ensures stronger light signal output, improving detection sensitivity.

Applications:

  • Nuclear Medicine Imaging:Widely used in Positron Emission Tomography (PET) scanners, serving as one of the core detection components.
  • High-Energy Physics:Used in particle physics experiments for γ-ray detection, providing high-precision data.
  • Nuclear Physics:Applied in various nuclear physics research, particularly in nuclear reactions and radiation measurements.
  • Other Detection Applications:Can be used in various high-energy detectors, such as γ-ray detectors and particle counters.
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Ce: YAG Crystal (Cerium-doped Yttrium Aluminum Garnet Crystal) https://www.hi-tech-materials.com/zh/product/ce-yag-crystal-cerium-doped-yttrium-aluminum-garnet-crystal https://www.hi-tech-materials.com/zh/product/ce-yag-crystal-cerium-doped-yttrium-aluminum-garnet-crystal#respond Fri, 25 Apr 2025 08:53:43 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3163
Ce:YAG (Cerium-doped Yttrium Aluminum Garnet) crystal is a high-performance scintillator material known for its excellent luminescence properties, high radiation resistance, and broad spectral response. Engineered with precise cerium doping, it provides efficient energy conversion, strong mechanical stability, and exceptional optical transparency. This material is widely used in medical imaging, radiation detection, high-energy physics experiments, and display technologies, ensuring reliable performance in advanced optical and detection systems.
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Product Overview:
Ce: YAG (Cerium-doped Yttrium Aluminum Garnet) is a material with excellent optical properties, widely used in lasers, detectors, and other high-tech fields. The crystal is based on a YAG (Yttrium Aluminum Garnet) matrix and is doped with Cerium (Ce), which enhances its photoluminescent properties. This makes Ce: YAG particularly effective in high-energy density environments such as laser sources and imaging systems. The crystal exhibits good fluorescence characteristics, high light yield, and rapid decay, making it an essential material in many optical and imaging devices.

Key Features:

  • High Light Yield:Cerium doping enhances the photoluminescent efficiency, making it ideal for high-brightness applications.
  • Fast Decay Characteristics:Capable of rapidly responding and decaying, suitable for high-frequency imaging systems.
  • Excellent Fluorescence:Exhibits distinct emission wavelengths, widely used in laser and imaging technologies.
  • Strong Stability:Maintains stable performance under high power and high-energy conditions, suitable for extreme applications.

Applications:

  • X-ray Imaging:Used in medical imaging devices like CT scanners to improve image quality and speed.
  • Laser Technology:Ce: YAG is used as a laser medium in solid-state lasers, providing efficient light source output.
  • Detectors:In scientific research and industrial detectors, Ce: YAG serves as a high-performance optical material for precise photonic conversion.
  • Other High-Tech Fields:Applied in aerospace, military, and optical imaging, offering stable optical performance and high efficiency.

 

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Ce: YAP Crystal (Cerium-doped Yttrium Aluminum Perovskite Crystal) https://www.hi-tech-materials.com/zh/product/ce-yap-crystal-cerium-doped-yttrium-aluminum-perovskite-crystal https://www.hi-tech-materials.com/zh/product/ce-yap-crystal-cerium-doped-yttrium-aluminum-perovskite-crystal#respond Fri, 25 Apr 2025 08:52:34 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3161
Ce:YAP (Cerium-doped Yttrium Aluminum Perovskite) crystal is a high-performance scintillator material known for its excellent light yield, fast decay time, and high-energy radiation resistance. Engineered with precise cerium doping, it delivers efficient scintillation properties, strong mechanical durability, and outstanding optical transparency. This material is widely used in medical imaging, radiation detection, high-energy physics experiments, and industrial applications, ensuring reliable performance in advanced detection and optical systems.
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Product Overview:
Ce: YAP (Cerium-doped Yttrium Aluminum Perovskite) crystal is a material with excellent optical and scintillation properties, widely used in high-energy physics, optical detection, and imaging technologies. The crystal is formed by doping a yttrium aluminum perovskite (YAP) matrix with cerium (Ce), which enhances its light yield, scintillation decay time, and radiation sensitivity. Ce: YAP crystals offer stable, high-quality optical performance in high-frequency and high-power environments, making them essential tools in many scientific and research fields.

Key Features:

  • High Light Yield:Cerium doping significantly enhances the photoluminescent efficiency, making it ideal for applications requiring high brightness output.
  • Fast Response Characteristics:With short scintillation decay times, Ce: YAP is suitable for high-frequency detection and imaging systems.
  • Good Radiation Sensitivity:Shows excellent responsiveness to X-rays, gamma rays, and other radiation, making it ideal for radiation detection applications.
  • Strong Stability:Maintains stable performance over long periods of use, even in extreme environmental conditions.

Applications:

  • Optical Detectors:Used in high-energy physics experiments and radiation detection, providing efficient radiation signal detection.
  • Medical Imaging:Applied in medical imaging devices such as PET scanners and CT scanners, improving image precision and response speed.
  • High-Energy Physics Research:Widely used as a detection material in high-energy particle detection and radiation monitoring.
  • Scientific Research:Extensively applied in various research experiments, particularly in fields such as radiation detection, imaging, and optical detection.
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Ce:GdAlGaO₆ (GAGG) Crystal https://www.hi-tech-materials.com/zh/product/cegdalgao%e2%82%86-gagg-crystal https://www.hi-tech-materials.com/zh/product/cegdalgao%e2%82%86-gagg-crystal#respond Fri, 25 Apr 2025 08:50:45 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3158
Ce:GdAlGaO₆ (GAGG) crystal is a high-performance scintillator material optimized for superior light yield, excellent radiation hardness, and broad emission spectrum. Engineered with precise cerium doping, it provides strong luminescence properties, efficient energy conversion, and outstanding mechanical stability. This material is widely used in medical imaging, high-energy physics experiments, radiation detection, and industrial applications, ensuring reliable performance in advanced optical and detection systems.
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Product Overview:
Ce:GdAlGaO₆ (GAGG) crystal is a next-generation high-end detection material, particularly suitable for CT imaging and security screening applications. Compared to traditional materials like GOS (Gadolinium OxySulfide), GAGG offers higher energy resolution and light output while avoiding issues such as local radiation and deliquescence. Due to its exceptional performance, GAGG has become the ideal choice for core detection materials in CT and advanced security screening equipment.

Key Features:

  • High Energy Resolution:Provides precise energy detection, significantly improving image clarity and accuracy.
  • High Light Yield:Excellent light yield ensures efficient energy conversion in detectors, enhancing detection sensitivity.
  • No Background Radiation:The absence of local radiation ensures interference-free detection, making it ideal for high-precision applications.
  • No Deliquescence:The crystal is stable in humid environments and not affected by deliquescence, ensuring long-term stability during use.

Applications:

  • CT Imaging:Widely used as the core detection material in medical CT scanners, enhancing image quality and scanning precision.
  • High-End Security Screening Equipment:Applied in advanced security screening devices for radiation detection, providing accurate detection performance.
  • Nuclear Physics Research:Used in nuclear physics experiments as a detection material for γ-rays and X-rays.
  • Other High-End Detection Applications:Suitable for a variety of applications requiring high energy resolution and high light output, such as high-energy physics detectors.
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Undoped YAG Crystal (Yttrium Aluminum Garnet Crystal) https://www.hi-tech-materials.com/zh/product/undoped-yag-crystal-yttrium-aluminum-garnet-crystal https://www.hi-tech-materials.com/zh/product/undoped-yag-crystal-yttrium-aluminum-garnet-crystal#respond Fri, 25 Apr 2025 08:49:35 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3156
Undoped YAG (Yttrium Aluminum Garnet) crystal is a high-purity optical material known for its exceptional hardness, superior thermal conductivity, and excellent optical transparency across visible and infrared wavelengths. Engineered with precise crystallization techniques, undoped YAG offers strong mechanical durability, minimal optical distortion, and high resistance to environmental degradation. This versatile material is widely used in laser optics, precision optical components, infrared windows, medical imaging devices, and scientific instrumentation, ensuring reliable optical performance in demanding applications.
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Product Overview:
Undoped YAG (Yttrium Aluminum Garnet) crystal is a high-performance material known for its excellent optical, mechanical, and chemical properties. It is widely used in ultraviolet (UV) and infrared (IR) optical devices. The crystal exhibits no absorption within the 0.25 to 5 micrometer spectral range, making it highly efficient for transmitting optical signals. As a cubic crystal system, undoped YAG is optically isotropic and offers outstanding thermal stability and mechanical strength, making it suitable for high-power laser applications. It is an essential material in various industrial and scientific applications, particularly as substrate and window material.

Key Features:

  • Excellent Thermal Stability:The crystal maintains stable optical performance even in high-temperature environments.
  • Low Stress:The crystal exhibits low internal stress, making it ideal for high-precision optical device manufacturing.
  • High Optical Quality:Pure YAG crystals have excellent optical quality, making them suitable for demanding optical components.

Applications:

  • UV and IR Optical Devices:Used as window and substrate materials in UV and IR optical instruments.
  • Lasers:Undoped YAG crystal is used as a laser medium in lasers, offering high output efficiency and stability.
  • High-Energy Optical Systems:Applied in high-power lasers and optical systems, such as lenses and windows.
  • Scientific Research:Commonly used in laboratory optical experiments and equipment as a high-quality optical component.

 

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Ytterbium-Doped Yttrium Aluminum Garnet Crystal (Yb:YAG Crystal) https://www.hi-tech-materials.com/zh/product/ytterbium-doped-yttrium-aluminum-garnet-crystal-ybyag-crystal https://www.hi-tech-materials.com/zh/product/ytterbium-doped-yttrium-aluminum-garnet-crystal-ybyag-crystal#respond Fri, 25 Apr 2025 08:48:28 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3154
Ytterbium-doped yttrium aluminum garnet (Yb:YAG) crystal is a high-performance laser material recognized for its excellent thermal conductivity, high optical efficiency, and superior mechanical stability. Engineered with precise ytterbium doping, it provides efficient lasing operation at 1030 nm and other wavelengths, making it ideal for industrial lasers, medical applications, scientific research, and defense technologies. Yb:YAG crystals offer high energy absorption, strong resistance to thermal degradation, and optimized power handling for demanding optical environments.
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Product Overview:
Ytterbium-doped yttrium aluminum garnet (Yb:YAG) crystal is a solid-state laser material commonly used in laser technology. This crystal, doped with ytterbium (Yb) ions, has excellent laser emission properties and is ideal for high-efficiency laser amplifiers, lasers, and other optical components. It is widely used in various scientific and technological fields, especially those that demand high-power lasers.

Key Features:

  • Efficient Laser Emission:Yb:YAG crystal has high laser emission efficiency, providing stable and continuous high-power output.
  • Excellent Thermal Stability:This material has a high thermal conductivity, effectively dissipating heat and ensuring the long-term stable operation of laser systems.
  • Wide Absorption Spectrum and Adjustable Wavelength:The Yb:YAG crystal has a broad absorption range and flexible wavelength tuning, making it suitable for laser applications across different wavelengths.
  • High Mechanical Strength and Stability:The crystal maintains good mechanical strength and stability under various environmental conditions, making it suitable for use in demanding industrial and military applications.

Applications:

  • Laser Technology:Yb:YAG crystal is widely used in lasers, laser amplifiers, and laser matrices, making it the preferred solid-state laser medium for efficient laser systems.
  • Optical Components:It can be used in optical components, and is commonly employed in laser systems, laser scanning, laser detection, and other applications.
  • Infrared Technology:In infrared spectroscopy and laser applications, Yb:YAG crystal is used for laser frequency conversion and detection.
  • Microelectronics:It can be used as a substrate in microelectronics, supporting efficient laser excitation and high-power laser output.
  • Defense and Research:Yb:YAG crystals are crucial in military, scientific research, and space exploration, particularly in advanced technologies such as laser communication and lidar (laser radar).
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Titanium-Doped Sapphire Crystal (Ti:Al₂O₃ Crystal) https://www.hi-tech-materials.com/zh/product/titanium-doped-sapphire-crystal-tial%e2%82%82o%e2%82%83-crystal https://www.hi-tech-materials.com/zh/product/titanium-doped-sapphire-crystal-tial%e2%82%82o%e2%82%83-crystal#respond Fri, 25 Apr 2025 08:46:59 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3152
Titanium-doped sapphire (Ti:Al₂O₃) crystal is a high-performance laser material recognized for its broad tunability, superior thermal stability, and excellent optical gain. Engineered with precise titanium doping, it enables tunable laser operation across a wide spectral range from 650 nm to 1100 nm, making it ideal for ultrafast lasers, spectroscopy, and precision scientific research. Ti:Al₂O₃ provides high damage thresholds, efficient energy absorption, and reliable performance in demanding optical applications.
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Product Overview:
Titanium-doped sapphire crystal (Ti:Al₂O₃) is a sapphire crystal material doped with titanium (Ti), known for its exceptional laser performance. It is widely used in lasers, optical devices, and other high-tech applications. This crystal serves as a solid-state laser medium, capable of producing high-efficiency laser output. It features a stable structure, excellent chemical properties, and can function reliably in extreme environments.

Key Features:

  • Efficient Laser Performance:Ti:Al₂O₃ is a high-performance laser material, capable of generating high-power laser output when properly excited, making it ideal for laser systems.
  • Excellent Optical Properties:The crystal offers high transparency and is suitable for a wide range of optical applications, particularly in the infrared and visible light spectrum.
  • Strong Structural Stability:The crystal’s structure is highly stable, able to withstand high-intensity laser radiation and is resistant to wear and high temperatures.
  • Wide Wavelength Tunability:The laser wavelength of Ti:Al₂O₃ can be adjusted over a broad range, making it versatile for various laser applications.

Applications:

  • Laser Technology:Ti:Al₂O₃ crystals are widely used in solid-state lasers, laser amplifiers, and other high-energy laser systems as a laser medium or gain medium.
  • Optical Components:These crystals are used as key optical elements in high-precision systems, such as laser resonators and optical amplifiers.
  • Infrared and Visible Light Applications:Ti:Al₂O₃ crystals play an important role in laser applications in the infrared and visible light range, including laser detection and spectroscopy.
  • Scientific Research:They are extensively used in advanced research in physics, chemistry, and other fields, particularly in nonlinear optics, laser studies, and laser communication technology.

 

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Neodymium-Doped Yttrium Aluminum Garnet Crystal (Nd:YAG Crystal) https://www.hi-tech-materials.com/zh/product/neodymium-doped-yttrium-aluminum-garnet-crystal-ndyag-crystal https://www.hi-tech-materials.com/zh/product/neodymium-doped-yttrium-aluminum-garnet-crystal-ndyag-crystal#respond Fri, 25 Apr 2025 08:45:46 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3150
Neodymium-doped yttrium aluminum garnet (Nd:YAG) crystal is a high-performance laser material known for its excellent optical gain, superior thermal conductivity, and high damage threshold. Engineered with precise neodymium doping, it delivers efficient lasing operation at 1064 nm and other wavelengths, making it ideal for industrial machining, medical lasers, military applications, and scientific research. Nd:YAG crystals ensure stable performance, high energy efficiency, and reliable operation in demanding optical environments.
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Product Overview:
Neodymium-doped yttrium aluminum garnet (Nd:YAG) is a commonly used solid-state laser medium, where neodymium (Nd) ions are doped into a yttrium aluminum garnet (YAG) matrix. It offers high-efficiency laser output and is widely used in industrial lasers, medical lasers, and scientific research. The crystal is particularly suitable for high-power and high-energy laser systems. Nd:YAG crystals deliver excellent laser performance and stability, capable of providing multiple wavelengths of laser output to meet various application requirements.

Key Features:

  • High-Efficiency Laser Output:Nd:YAG crystals provide 1064nm laser output, and can also generate other wavelengths via frequency doubling, with high energy conversion efficiency.
  • High-Power Laser:The crystal offers high laser emission efficiency and strong output, making it ideal for high-power laser systems.
  • Good Thermal Stability:Nd:YAG crystals have good thermal conductivity, maintaining stable performance even under high-power operation in harsh environments.
  • Long Lifespan and High Reliability:With excellent mechanical strength and chemical stability, Nd:YAG crystals can maintain stable laser output over extended periods of use.

Applications:

  • Industrial Applications:Nd:YAG lasers are widely used in laser cutting, laser marking, laser welding, and laser engraving, providing efficient and accurate laser processing solutions for precision manufacturing.
  • Medical Applications:In the medical field, Nd:YAG lasers are used for soft tissue cutting, eye surgeries, dental treatments, and other non-invasive procedures, with excellent tissue compatibility.
  • Scientific Research:Nd:YAG lasers are crucial tools in various research fields, such as physics, chemistry, and biology, with important applications in laser spectroscopy, laser cooling, and more.
  • Defense and Security:In military and defense applications, Nd:YAG crystals are used in laser weapons, laser radar, and optical sensors, providing precise detection and targeting capabilities.

 

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