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| | | Weekly Edition | | | Date: 24 April 2025 | | | |
| New Photonics Products this Week | |
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| 755 nm - 860 nm, Ultrafast Lasers for Attosecond Science Applications | |
Laser
from Coherent Corp.
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| The Vitara Series from Coherent Corp. are Ultrafast Lasers that have a tuning range of 755 nm - 860 nm and 765 nm - 810 nm. They deliver an output power of over 525 mW & 930 mW and have a bandwidth (FWHM) of 30 nm - 125 nm. These lasers are ideal for Ti:S ultrafast amplifier seeding, terahertz generation, time-resolved spectroscopy, broadband CARS, and attosecond science applications. |
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| 527 nm DPSS Laser for Ti:Sapphire Amplifier Pumping Applications | |
Laser
from MKS | Spectra-Physics
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| The Ascend 60 from MKS | Spectra-Physics is a Q-switched (Diode-Pumped Solid-State) DPSS Laser that operates at a wavelength of 527 nm. It delivers an average output power of greater than 35 W (at 1 kHz), 50 W (10 kHz) & 60 W (5 kHz) and has a maximum power stability of 0.15% RMS. This pulsed green laser is ideal for Ti:Sapphire amplifier pumping applications. |
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| 808 nm CW Multimode Laser diode | |
Laser Diode
from Sheaumann Laser
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| The HW-808-015W-4 from Sheaumann Laser is a Continuous Wave (CW) Laser Diode that operates at a wavelength of 808 nm. It delivers an output power of 15 W and has a slope efficiency of 1.1 W/A. This multimode laser diode has a beam divergence of 32 degrees (vertical far-field) and 10 degrees (horizontal far-field) at FWHM. It requires a threshold current of 2.4 A, DC voltage of 2.5 V, and consumes 15.5 A of current. |
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| 250 nm - 610 nm, Picosecond Pulsed LEDs for Spectroscopy Applications | |
Laser
from Edinburgh Instruments
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| The EPLED Series from Edinburgh Instruments are Picosecond Pulsed UV & Vis LEDs that operate at a wavelength of 250 nm - 610 nm. They deliver an average power of 0.15 μW - 5 μW (at 20 MHz) and have a pulse width of 850 ps - 1500 ps (FWHM). These LEDs have a spectral width of up to 10 nm - 15 nm and are ideal for fluorescence lifetime measurements & spectroscopy applications. |
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| 1030 nm Optical Mirror for Ultrafast Yb-Doped Fiber Lasers | |
Optical Mirror
from OPTOMAN
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| The ULLM5 from OPTOMAN is an Optical Mirror that operates at a wavelength of 1030 nm. It has a reflectance of 99.95% (HRs) & 99.9% (HRp) and pulse duration of 491.1 fs. This linearly s or p polarized mirror reflects a laser beam with a diameter of 177.4 ± 3.6 μm and a repetition rate of 10 kHz. It is ideal for use in ultrafast Yb:YAG, Yb:KYW/KGW, and Yb-doped fiber lasers. |
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Product Details | |
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| Tunable BBO Optical Parametric Oscillator for Photobiology Applications | |
Optical Parametric Oscillator
from Litron Lasers Ltd.
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| The Aurora II 355-65-10 from Litron Lasers Ltd. is a Tunable BBO Optical Parametric Oscillator (OPO) that operates at a wavelength of 210 nm - 410 nm (SH generator), 410 nm - 710 nm (signal), and 710 nm - 2600 nm (idler). It is ideal for photoacoustic imaging, laser-induced fluorescence, photobiology, LIDT, high-resolution spectroscopy, and display manufacturing & testing applications. |
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Product Details | |
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| 1550 nm Semiconductor Optical Amplifier for Coherent LiDAR Applications | |
Optical Amplifier
from SemiNex Corporation
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| The COC-287 from SemiNex Corporation is a Semiconductor Optical Amplifier that operates at a wavelength of 1550 nm. It delivers an output power of 0.375 W and has a 3dB bandwidth of 80 nm. This optical amplifier has an aperture width of 4 μm and aperture height of 1 μm. It is ideal for optical fiber communications, coherent LiDAR, and network test equipment applications. |
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| 0.32 Megapixel VIS-SWIR Camera for Beam Profiling Applications | |
Scientific & Industrial Camera
from Raptor Photonics
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| The Ninox 640 II from Raptor Photonics is a 0.32 Megapixel VIS-SWIR Camera that has a resolution of 640 (H) x 512 (V) pixels. It has a spectral response of 0.6 μm - 1.7 μm and pixel pitch of 15 μm x 15 μm. This digital camera has a global shutter that delivers a frame rate of up to 120 fps (120 Hz). It is ideal for astronomy, beam profiling, hyperspectral imaging, and microscopy applications. |
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| Featured Article | | What is Entanglement Swapping? | | Photonic entanglement swapping is a quantum mechanical process where photons become entangled without direct interaction. Serving as a pivotal experiment in quantum mechanics, entanglement swapping plays a crucial role in the development of quantum networks by harnessing quantum bits, or qubits, for data transmission. Click here to read the full article. | | | |
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