Français

The "white" laser device from startup Superlight Photonics will completely transform imaging

711
2023-10-28 10:34:02
Voir la traduction

Superlight Photonics, a start-up company headquartered in Enshurd, has developed a broadband laser chip that can replace the bulky and power consuming technology currently used in advanced imaging and metering equipment.

This idea suddenly appeared in his mind, while moving his other belongings from Germany to his new home in Enschede. During his doctoral research at the Max Planck Institute of Multidisciplinary Sciences in the Department of Ultrafast Dynamics, Haider Zia became an expert in the field of "white" lasers. As a postdoctoral fellow at Twente University, he continued to manipulate photons, but this time they were limited to chips. He suddenly realized that he could combine his knowledge in these two fields to manufacture chip broadband lasers.

At first, Zia thought his idea was an interesting scientific advancement. Only during discussions with colleagues and UT group meetings did he realize that his invention in integrated photonics could revolutionize many industrial and medical imaging technologies. Once I realize there is great market potential, I am excited to push it into the industry, "Zia said.

Cees Links shared Zia's enthusiasm. Lynx reached a deal with Apple, which is often considered to have ushered in the Wi Fi era. He founded the fabless Greenpeak Technologies in 2004. The company focuses on wireless technology for IoT and smart home applications and was acquired by American multinational company Qorvo in 2016. Links stayed at Qorvo until the end of last year, and then decided to start coaching startups.

After being introduced to Zia's newly established company Superlight Photonics, Links quickly realized that he wanted to be deeply involved. He joined this startup as CEO in August last year. Zia and Links have recently obtained funding from DeeptechXL and Oost NL and developed a practical product to showcase to potential customers. They are now searching for the perfect market entry point for their on chip "white" lasers.

Superlight lasers are not actually white because they work in infrared light. However, this is a useful analogy as it clearly indicates that they emit a wide spectrum - unlike traditional lasers, which typically emit a single wavelength. Just like white light composed of a series of colors, the emission spectrum of Superlight's so-called supercontinuum laser spans a wide wavelength range of up to one thousand nanometers.

This wide spectrum is very convenient in certain imaging applications, such as searching for microcracks in metals, eye measurements, detecting skin cancer, and ultra precise positioning measurements. It's like transitioning from black and white to color television: it adds a lot of information, enabling more accurate and high-resolution measurements, "Links said.

No wonder many companies have developed their own supercontinuum lasers, either using multiple light sources or scanning a series of wavelengths by using diffraction gratings to decompose a single light source. The disadvantage of this method is that it can lead to cumbersome and power consuming settings. On the other hand, Zia's "super laser" is based on a chip that utilizes nonlinear optical effects to broaden the output spectrum of a monochromatic laser source. This has created a compact and lightweight device that requires thousands of times less power than any other product currently on the market.

Superlight lasers are not actually white because they work in infrared light. However, this is a useful analogy as it clearly indicates that they emit a wide spectrum - unlike traditional lasers, which typically emit a single wavelength. Just like white light composed of a series of colors, the emission spectrum of Superlight's so-called supercontinuum laser spans a wide wavelength range of up to one thousand nanometers.

This wide spectrum is very convenient in certain imaging applications, such as searching for microcracks in metals, eye measurements, detecting skin cancer, and ultra precise positioning measurements. It's like transitioning from black and white to color television: it adds a lot of information, enabling more accurate and high-resolution measurements, "Links said.

No wonder many companies have developed their own supercontinuum lasers, either using multiple light sources or scanning a series of wavelengths by using diffraction gratings to decompose a single light source. The disadvantage of this method is that it can lead to cumbersome and power consuming settings. On the other hand, Zia's "super laser" is based on a chip that utilizes nonlinear optical effects to broaden the output spectrum of a monochromatic laser source. This has created a compact and lightweight device that requires thousands of times less power than any other product currently on the market.

Source: Laser Network

Recommandations associées
  • Innoviz Technologies, a publicly listed laser radar company, has laid off approximately 9% of its workforce

    On February 5, 2025, Innoviz Technologies, an Israeli laser radar listed company, announced operational optimization measures to extend the duration of the company's cash reserve usage and accelerate profitability and free cash flow generation. To maximize efficiency, the company will reduce investment in developing mature areas. These measures will result in a reduction of approximately 9% in the...

    02-07
    Voir la traduction
  • Shanghai Optics and Machinery Institute has made progress in near-field state analysis of high-power laser devices based on convolutional neural networks

    Recently, the research team of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Fine Mechanics identified and analyzed the abnormal near-field output of the SG - Ⅱ upgrade device by using the spatial domain computing method and the deep learning model with attention mechanism in response to the requirements of real-time and effective...

    2024-04-25
    Voir la traduction
  • Aston University is the first to adopt innovative laser detection technology using MEMS mirrors

    The School of Engineering and Physical Sciences at Aston University, located in Birmingham, UK, is at the forefront of exploring innovative laser detection methods and turbulence simulation. The plan revolves around the utilization of micro electromechanical mirrors, which have had a significant impact on various scientific fields over the past two decades.MEMS reflectors have gained widespread re...

    2024-03-07
    Voir la traduction
  • Microcomb launches a simplified design for powerful lasers based on chips

    Researchers at the University of Rochester have created new micro comb lasers that go beyond previous limitations and have simple designs suitable for various applications. The research results are published in Nature Communications.Optical frequency combs are optical measurement instruments that have revolutionized atomic clocks, spectroscopy, metrology, and other fields. However, the difficulty ...

    2024-05-25
    Voir la traduction
  • Laser blasting promises to solve global plastic problem

    Recently, researchers announced the development of a way to use laser blasting to break down plastic and other material molecules into their smallest parts for future reuse.This method involves placing these materials on a two-dimensional material called transition metal dichalcogenides and then irradiating them with light.This discovery has the potential to improve the way we handle plastics that...

    2024-07-16
    Voir la traduction