公司简介
德国Amphos公司(取名自Amplifying Photonics,光子放大)是夫琅和费研究院和亚琛工业大学孵化的公司。Amphos致力于InnoSlab放大技术的超高功率超快激光器研发,服务于工业和科研市场!是当今世界功率最高的超快激光器制造商!
技术能力
AMPHOS Lasersystems are based on InnoSlab Amplification Technology. InnoSlab amplifier systems are characterized by a very simple beam path. No CPA and no regenerative beam path is necessary to achieve large amplification with high efficiency.
The extremely compact setup - the distance between the folding mirrors is just 35mm - leads to a robust, quasi monolithic package.
Due to the line shaped amplification volume of the InnoSlab amplifier the pumping system is highly efficient. No symmetrization of the diode laser radiation is necessary.
The usage of Yb:YAG as active medium allows high average power due to the stable YAG crystal and low quantum defect as well as ultrashort pulses in the 500fs range due to the broad emission spectrum.
As the InnoSlab laser is a "crystal" laser, the time-bandwidth spectrum is diffraction limited.
Scalability of output power is also simple with InnoSlab lasers. By increasing the crystal width the output power can be increased keeping the high beam quality and without increasing the demand on brightness of diode lasers. This is unique for diode pumped solid state lasers.
产品列表
AMPHOS 10
The AMPHOS Ultra-Short-Pulse-Laser with an output power of 10W |
Compact system design - Wide range of paramters - Flexible pulse-bursts - Yb:YAG amplification technology
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AMPHOS 100
The AMPHOS Ultra-Short-Pulse-Laser with an output power of 100W |
Compact laserhead - Pulse energy > 250 µJ - Flexible repetition rate up to 40 MHz - Yb:YAG amplification technology
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AMPHOS 200
The AMPHOS Ultra-Short-Pulse-Laser with an output power of 200W |
Compact laserhead - Pulse energy > 500 µJ - Flexible pulse parameters by software - Yb:YAG amplification technology
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AMPHOS 400
The AMPHOS Ultra-Short-Pulse-Laser with an output power of 400W |
Pulse energy > 500 µJ - Flexible pulse parameters - Upgrade to >1.000W - Amplifier-only version
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应用领域
Applications of AMPHOS laser systems cover a very broad range from fundamental research up to industrial processes.
Scientific applications use the high average output power to reduce measurement time in metrology or high intensity that cannot be achieved with other systems.
Scientific applications:
cohernt EUV generation
OPCPA
attosecond physics
Industrial applications increase their throughput due to the high average power of AMPHOS laser systems. Many applications have been demonstrated using Watt-level fs-lasers. These applications are economical now:
Cutting of glass
CFRP machining
High-Pressure Turbines (HPT)
Polymer LPVD
removal of hard and brittle materials
EDM - Replacement
Photovoltaics