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  • Good quality Nd:Yag Laser Components - BBO POCKELS CELL – WISOPTIC

    Good quality Nd:Yag Laser Components - BBO POCKELS CELL – WISOPTIC

    BBO(Beta-Barium Borate, β-BaB2O4)based Pockels cells operate from approximately 0.2 – 1.65 µm and are not subject to tracking degradation. BBO exhibits low piezoelectric response, good thermal stability, and low absorption. Due to the low piezoelectric coupling coefficients of BBO, BBO Pockels cells function at repetition rates of hundreds of kilohertz. These Pockels cells work in regenerative amplifiers, high pulse repetition rate micro-machining lasers and high-average power lasers ...
  • 2019 China New Design Gtr-Ktp - BBO Crystal – WISOPTIC

    2019 China New Design Gtr-Ktp - BBO Crystal – WISOPTIC

    BBO (ẞ-BaB2O4) is an excellent nonlinear crystal with combination of a number of unique features: wide transparency region, broad phase-matching range, large nonlinear coefficient, high damage threshold, and excellent optical homogeneity. Therefore, BBO provides an attractive solution for various nonlinear optical applications such as OPA, OPCPA, OPO etc. BBO also has advantages of large thermal acceptance bandwidth, high damage threshold and small absorption, thus is very suitable for freque...
  • OEM Factory for Quarter Waveplate - WAVE PLATE – WISOPTIC

    OEM Factory for Quarter Waveplate - WAVE PLATE – WISOPTIC

    A wave plate, also called a phase retarder, is an optical device that changes the polarization state of light by generating an optical path difference (or phase difference) between two mutually orthogonal polarization components. When the incident light passes through wave plates with different types of parameter, the exit light is different, which may be linearly polarized light, elliptically polarized light, circularly polarized light, etc. At any particular wavelength, the phase difference...
  • OEM Supply Wave Plate - WAVE PLATE – WISOPTIC

    OEM Supply Wave Plate - WAVE PLATE – WISOPTIC

    A wave plate, also called a phase retarder, is an optical device that changes the polarization state of light by generating an optical path difference (or phase difference) between two mutually orthogonal polarization components. When the incident light passes through wave plates with different types of parameter, the exit light is different, which may be linearly polarized light, elliptically polarized light, circularly polarized light, etc. At any particular wavelength, the phase difference...
  • Hot New Products Ktp Pockels Cell - RTP POCKELS CELL – WISOPTIC
  • Professional China Laser Crystals - Nd:YAG Crystal – WISOPTIC

    Professional China Laser Crystals - Nd:YAG Crystal – WISOPTIC

    Nd:YAG (Neodimium Doped Yttrium Aluminum Garnet) has been and continue to be the most widely used laser crystal for solid-state lasers. Good fluorescence lifetime (twice more than that of Nd:YVO4) and thermal conductivity, as well as robust nature, make Nd:YAG crystal very suitable for high-power continuous wave, high-energy Q-switched and single mode operations. WISOPTIC provides Nd:YAG rods with the following features: different doping levels, high optical homogeneity, high processing accur...
  • Factory wholesale Passive Q-Switch Crystal - Nd:YAG Crystal – WISOPTIC

    Factory wholesale Passive Q-Switch Crystal - Nd:YAG Crystal – WISOPTIC

    Nd:YAG (Neodimium Doped Yttrium Aluminum Garnet) has been and continue to be the most widely used laser crystal for solid-state lasers. Good fluorescence lifetime (twice more than that of Nd:YVO4) and thermal conductivity, as well as robust nature, make Nd:YAG crystal very suitable for high-power continuous wave, high-energy Q-switched and single mode operations. WISOPTIC provides Nd:YAG rods with the following features: different doping levels, high optical homogeneity, high processing accur...
  • High reputation Pockels Cell Modulator - RTP POCKELS CELL – WISOPTIC
  • 100% Original Rtp - Bonded Crystal – WISOPTIC

    100% Original Rtp - Bonded Crystal – WISOPTIC

    Diffusion bonded crystal consists of two, three or more parts of crystals with different dopants or same dopant with different doping levels. This material is commonly made by bonding one laser crystal with one or two undoped crystals by precise optical contact and further processing under high temperature. This innovative design substantially reduces thermal lens effect of the laser crystals, thus make it possible fora compact laser to have enough power. Contact us for the best solution for ...
  • High Quality Functional Crystals - Nd:YVO4 Crystal – WISOPTIC

    High Quality Functional Crystals - Nd:YVO4 Crystal – WISOPTIC

    Nd:YVO4 (Neodymium-doped Yttrium Vanadate) is one of the best commercially available material for diode-pumped solid-state lasers, especially for lasers with low or middle power density. For example, Nd:YVO4 is a better choice than Nd:YAG for generating low-power beams in hand-held pointers or other compact lasers. In these applications, Nd:YOV4 has some advantages over Nd:YAG, e.g. high absorption of pumped laser irradiation and large stimulated emission cross section. Nd:YVO4 is a good choi...
  • OEM Factory for Quarter Waveplate - WINDOW – WISOPTIC

    OEM Factory for Quarter Waveplate - WINDOW – WISOPTIC

    Optical windows are made by optically flat, transparent optical material that allow light into an instrument. Windows have high optical transmission with little distortion of the transmitted signal, but can not change the magnification of the system. Windows are widely used in various optical devices such as spectroscopic equipment, optoelectronics, microwave technology, diffractive optics, etc. When choosing a window, the user should consider whether the material’s transmission propert...
  • Wholesale Price Gaussian Reflector - WINDOW – WISOPTIC

    Wholesale Price Gaussian Reflector - WINDOW – WISOPTIC

    Optical windows are made by optically flat, transparent optical material that allow light into an instrument. Windows have high optical transmission with little distortion of the transmitted signal, but can not change the magnification of the system. Windows are widely used in various optical devices such as spectroscopic equipment, optoelectronics, microwave technology, diffractive optics, etc. When choosing a window, the user should consider whether the material’s transmission propert...