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HM's Functional Crystals are advanced materials with specialized properties, ideal for use in electronics, lasers, sensors, and communication. Our range includes piezoelectric (e.g., quartz), optical (e.g., YAG), ferroelectric (e.g., barium titanate), and magnetic (e.g., ferrites) crystals, offering exceptional performance for applications in frequency control, light emission, and signal processing.
HM's Functional Crystals are advanced materials with specialized properties, ideal for use in electronics, lasers, sensors, and communication. Our range includes piezoelectric (e.g., quartz), optical (e.g., YAG), ferroelectric (e.g., barium titanate), and magnetic (e.g., ferrites) crystals, offering exceptional performance for applications in frequency control, light emission, and signal processing.
Subcategories
Our magneto-optic crystals are designed for magneto-optic effects and optical polarization control, offering excellent optical quality and magnetic responsiveness. Widely used in lasers, optical communications, and quantum computing, they meet high stability and precision requirements.
Our laser crystals are made from high-quality materials, specifically designed for laser applications, offering excellent optical performance and high efficiency. They are widely used in lasers, medical devices, laser marking, and industrial processing, providing stable output power and long lifespan, meeting high precision and high power requirements.
Our scintillation crystals offer excellent optical performance and are widely used in radiation detection, medical imaging, nuclear industry, and particle physics research. Made from high-purity materials, these crystals efficiently convert radiation energy into detectable light signals, providing accurate measurement and detection capabilities with high sensitivity and stability.
Photoelectric Crystals are a class of functional materials with exceptional photoelectric properties. They are widely used in laser technology, optical modulation, sensors, and communication systems. These crystals enable efficient conversation between light and electricity, offering high sensitivity, fast response, and excellent stability. Common photoelectric crystals include Lithium Niobate (LiNbO3), Lithium Tantalate (LiTaO3), and Potassium Titanyl Phosphate (KTP).
Infrared crystals are materials with excellent transmission properties in the infrared spectrum. They are used in optics, sensors, thermal imaging, and lasers. Made from high-purity materials like KBr, Ge, CaF2, LiF, and BaF2, they offer transparency, durability, and resistance to thermal and mechanical stress. These crystals are essential in industries such as defense, medical diagnostics, and scientific research.
Semiconductor crystals, made from materials like silicon (Si), gallium arsenide (GaAs), and zinc oxide (ZnO), have electrical conductivity between conductors and insulators. They are essential in electronic devices such as transistors, diodes, and solar cells, and are key in industries like telecommunications, computing, and renewable energy.
Nonlinear Crystals are materials with unique properties that allow them to exhibit a nonlinear response to applied electromagnetic fields. The common nonlinear crystal materials include beta barium borate (BBO), potassium titanyl phosphate (KTP), and lithium niobate (LN), widely applied in frequency conversion, optical amplification, and laser generation.
Metal single crystals are materials with a highly ordered atomic structure, providing superior mechanical, electrical, and thermal properties. These crystals are used in advanced applications like aerospace, electronics, and manufacturing, where high performance and reliability are required. Common metal single crystals include copper, aluminum, nickel, and magnesium.
Other crystal materials with exceptional magnetic and conductive properties, such as ferric oxide (Fe3O4), tin dioxide (SnO2), and cuprous oxide (CuO), are highly effective in applications like magnetic storage, gas sensing, transparent conductive films, and photocatalysis.
Barium Borate (BBO) Crystal offers excellent optical transmission from 188 nm to 5.2 μm, with optimal performance between 3 μm and 5.2 μm. It is ideal for nonlinear optical applications, including harmonic generation, frequency doubling, and tunable OPOs. Heeger Materials is a professional supplier and manufacturer of high-quality BBO crystal, offering...
Cesium Lithium Borate (CLBO) Crystal is a promising nonlinear optical material with excellent deep ultraviolet (UV) properties. It is widely used in high-power lasers, optical communication, imaging, biomedical applications, and UV radar, offering high conversion efficiency and wide spectral range.
Potassium Titanyl Phosphate (KTP) Crystal is a high-performance frequency doubling crystal widely used in commercial and scientific applications, including laboratory systems, medical systems, range finders, LIDAR, optical communications, and industrial laser systems. HM is a professional supplier and manufacturer of high-quality KTP Crystal, offering...
Grey-Track Resistant Potassium Titanyl Phosphate Crystal, also called GTR-KTP Crystal is an advanced nonlinear optical crystal with improved grey-track resistance. It offers superior performance in high repetition rate and high-power laser systems compared to traditional KTP crystals.
Rubidium Titanyl Phosphate (RTP) Crystal is a high-performance nonlinear and electro-optic material, widely used in nonlinear and electro-optic applications. It offers superior damage threshold, high electrical resistivity, and stability, with a broad transmission range from 350 nm to 4500 nm.
Potassium Dihydrogen Phosphate (KDP) and Deuterated Potassium Dihydrogen Phosphate (DKDP) Crystals are widely used in nonlinear optical applications due to their excellent UV transmission, high damage threshold, and high birefringence. They are ideal for frequency doubling and electro-optic modulation in Nd:YAG laser systems.
Potassium Titanyl Arsenate (KTA) Crystal is a high-performance nonlinear optical and electro-optic material with superior properties compared to KTP, including higher nonlinear coefficients and reduced absorption in the 2.0-5.0 μm range. It is ideal for SHG, SFG/DFG, OPO, electro-optic Q-switching, modulation, and waveguide applications.
Mercury Gallium Sulfide (HGS) Crystal is a high-performance nonlinear optical crystal with a high laser damage threshold and conversion efficiency. It is ideal for frequency doubling and OPO/OPA applications in the 1.0 to 10 µm wavelength range.
Silver Gallium Sulfide (AGS) Crystal is a widely used nonlinear crystal for frequency doubling and three-wave mixing. It enables tunable laser generation in the 1-10 µm spectral range with high conversion efficiency, especially when pumped by Nd: YAG lasers.
Barium Gallium Sulfide (BGS) Crystal is a new wide-bandgap mid-infrared nonlinear crystal with a broad transmission range, from 350 nm to 13.7 μm. It is ideal for Nd: YAG laser-pumped optical parametric oscillation (OPO), offering high nonlinear coefficients and a high damage threshold.
Barium Gallium Selenide (BGSe) Crystal is a nonlinear optical material grown using the Bridgman-Stockbarger method. It features large crystal sizes suitable for measuring dispersion and refractive coefficients, essential for phase interaction predictions.
Silver Gallium Selenide (AGSe) Crystal is an effective infrared frequency doubling crystal with a broad transmission spectrum from 0.73 μm to 18 μm. It offers excellent phase matching and tunability for a variety of laser pumping applications.