Intraband LLC的封面图片
Intraband LLC

Intraband LLC

研究服务

Madison,Wisconsin 55 位关注者

关于我们

Working together with the University of Wisconsin-Madison, Intraband has developed new Quantum Cascade Laser (QCL) technologies that enable high-power, high-efficiency, reliable QCL operation with excellent beam quality. These technologies include QCL-design approaches we have used to achieve the highest published CW and peak-pulsed powers from MOCVD-grown QCL single edge emitters. The company also has technologies for surface emitting and coherent arrayed QCLs. Intraband develops QCL technologies for a variety of applications including: defense systems, lasers for research & development, industrial lasers, sensor systems, and medical applications.

网站
https://www.intraband.net/
所属行业
研究服务
规模
2-10 人
总部
Madison,Wisconsin
类型
私人持股
创立
2007
领域
Quantum Cascade Laser (QCL) Technologies 和Research & Development

地点

Intraband LLC员工

动态

  • 查看Intraband LLC的组织主页

    55 位关注者

    We are proud of Intraband founders Dan Botez and Luke Mawst and greatful that the UW-Madison Discovery to Product team is supportive of the transition to product.

  • 查看Intraband LLC的组织主页

    55 位关注者

    New publication from Intraband:

    查看Rob Marsland的档案

    President at Intraband LLC

    I'm so happy that we are finally able to publish this paper on Intraband's collaboration with the NRL, Praevium, and the UW-Madison to demonstrate that free-space laser communication in the MWIR, ~ 4.6-micron wavelength, may be accomplished with dynamic range approaching that achieved at 1.55-micron wavelength thanks to the resonant-cavity infrared detector (RCID) and distributed-feedback quantum cascade lasers. https://lnkd.in/gyt6yEVy

  • Intraband LLC转发了

    查看Suraj Suri的档案

    Research Engineer @ Intraband, LLC | Developing High-Power Mid-Infrared Lasers and Amplifiers

    An experimental validation of our theory was observed in electro-optical characteristics extracted from a preliminary QCL design emitting at 4.6 microns. Though the design was not optimized for carrier leakage suppression, alignment of key wavefunctions in a certain fashion which led to a strong PICT-effect is evident. To the best of our knowledge, this is the second highest front-facet maximum wall-plug efficiency value (19.1 %) reported to date, and the highest value reported for a QCL grown using a MOCVD system. Read our latest publication in nanophotonics for more insights on our work in high-power mid-infrared emitting QCLs, https://lnkd.in/gTT28yXM.

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