日本語

Diffractive optical elements: the behind the scenes hero of structured light laser technology

208
2024-04-10 14:45:47
翻訳を見る

In today's rapidly developing technological era, structured light laser technology has become an important tool in the fields of 3D measurement and image capture. The core of this technology lies in a magical device called Diffractive Optical Elements (DOE), which can precisely control and shape laser beams, creating various complex light patterns. But what exactly is DOE? How does it work? Let Holoor and everyone explore the world of DOE in depth, unveiling its mysterious veil.

What is a diffractive optical element?
Simply put, diffractive optical elements are like a special transparent window that can precisely shape and control the laser beam passing through it through diffraction effects - the bending phenomenon of light when passing through small holes or slits. By creating a controlled phase delay along the path of the laser beam, DOE can generate diffraction rays with preset orders, thereby generating any desired beam pattern.

How does DOE generate structured light?
Structured light, in short, is light that is integrated into a specific pattern for three-dimensional measurement and analysis of objects. To generate this type of structured light, DOEs typically adopt a periodic grating like structure design, which allows them to generate any desired order distribution from simple lines to complex grids. This flexibility and precision make DOE an indispensable part of structured light laser technology.

Unique advantages of DOE
A significant advantage of DOEs is that they are not sensitive to the center of the beam size, which means that regardless of how the diameter of the beam changes, DOEs can maintain consistency in their shaping effect. This sturdy and durable feature, combined with their ability to easily integrate into structured light laser sources, enables DOEs to demonstrate high reliability and efficiency in various application scenarios.

Beam shaping diffusers and other applications
In addition to traditional periodic grating structures, DOE also includes other types of components such as beam shaping diffusers. These diffusers can generate multiple beam patterns such as lines, linear arrays, grids, and even more unique distributions required for special structured light applications, such as in tube sensing. These diverse beam modes further expand the application range of structured light laser technology, from industrial manufacturing to medical imaging, and then to safety monitoring and other fields.

conclusion
Diffractive optical elements are the behind the scenes heroes in structured light laser technology. They not only provide an efficient and reliable way to generate and control structured light, but also open up new possibilities for various 3D measurement and image capture tasks. With the continuous advancement of technology, we can expect Holoor DOE to bring more innovation and breakthroughs in the future, helping us explore and understand the world around us in a new way. Under the guidance of light, the unknown and complex three-dimensional world will gradually become clear and visible, revealing its unique beauty and secrets.

Source: Sohu

関連のおすすめ
  • Leica Cine 1 laser TV with 4K display screen launched with a starting price of $8995

    Photography brand Leica has launched its first 4K movie and television. The Leica Cine 1 laser TV was announced a year later during the I FA 2022 period. This iconic photography brand is shifting some of its focus to projecting perfect images in our living room.featureThe Leica Cine 1 laser TV embodies Leica's philosophy in its camera design. Leica continues to provide precision optical engineerin...

    2023-10-19
    翻訳を見る
  • Zygo showcases 3D optical metrology instruments on Space Comm

    Zygo Corporation, a business unit of AMETEK, announced that it will be showcased at the D28 booth of the Space Comm Expo held in Farnborough, UK from March 6th to 7th this year.Space Comm showcases the end-to-end supply chain of products, services, and applications that provide information and technological development for commercial aerospace enterprises, governments, and defense organizations, p...

    2024-03-01
    翻訳を見る
  • Scientists from the SLAC National Accelerator Laboratory in the United States have launched the world's most powerful X-ray laser

    Scientists at the SLAC National Accelerator Laboratory have launched the world's most powerful X-ray laser, which will be used for in-depth atomic and molecular research.It is a significant upgrade to its predecessor, as its brightness has increased by 10000 times.The upgraded laser facility also uses superconducting accelerator components, allowing it to operate at low temperatures near absolute ...

    2023-11-17
    翻訳を見る
  • Leica Measurement System Development First Person Laser Scanner

    Leica Geosystems, a subsidiary of Hexagon, has developed Leica BLK2GO PULSE, its first person laser scanner, which combines LiDAR sensor technology with the original Leica BLK2GO shape. The technology will be released in early 2024.The scanner provides users with a fast, simple, and intuitive first person scanning method that can be controlled through a smartphone and provides real-time full color...

    2023-10-19
    翻訳を見る
  • Mazak will push economical laser cutting processing equipment to Europe

    Recently, Yamazaki Mazak, a well-known Japanese machine tool manufacturer, announced that it will unveil its economic laser processing star Optiplex 3015 Ez for the first time in the European market at the upcoming 2024 EuroBLECH exhibition. This carefully crafted laser processing machine not only combines high-quality processing capabilities with affordable prices, but also aims to open the doo...

    2024-09-25
    翻訳を見る