Polski

Scientists Developing New Low Cost Manufacturing Technologies for High Resolution Optical Components

201
2024-01-06 13:40:20
Zobacz tłumaczenie

Scientists from Leibniz University in Hanover have pioneered the development of a new manufacturing technology - UV LED based microscopy projection lithography. This technology is expected to completely change the manufacturing method of optical components, providing high resolution at lower cost and ease of use. The MPP system utilizes the power of UV LED light sources to transcribe the structural patterns of photomasks onto a substrate coated with photoresist. Impressively, it can create optical components with feature sizes as small as 85 nm, comparable to more expensive and complex methods such as multiphoton and electron beam lithography.

MPP technology unfolds through the design of structural patterns, which are initially printed on transparent foil. Then, through carefully arranged lithography settings and subsequent wet etching processes, these patterns are transferred onto a chromium photomask. This innovative approach is particularly beneficial for applications that require rapid prototyping and economic manufacturing, making it a blessing for creating optical devices essential for microfluidic devices, biosensors, and other biomedical research or consumer electronics products.

In their research process, scientists were able to generate diamond nanocone structures using thermal annealing methods. They demonstrated that the extraction efficiency of nitrogen vacancy center emitters in nanostructures depends on the geometry of the nanocone/nanopillar, emitter polarization, and axis depth. The research results indicate that nanocones and nanocolumns have an advantage in extracting from emitter dipoles with s - and p-polarization, respectively. The emitter in the s-polarized nanocone and the emitter in the p-polarized nanopillar have achieved the most promising results in terms of collection efficiency.

These groundbreaking insights may have a significant impact on the design and manufacturing of micro/nano optical devices based on NV centers in the future. This study adds new dimensions to the field of lithography and has been published in the respected journal Light: Advanced Manufacturing. MPP technology has the characteristics of high resolution, low cost, and user-friendly operation, which is likely to open up the next level of innovation in optical device manufacturing.

Source: Laser Net

Powiązane rekomendacje
  • Laser induced 2D material modification: from atomic scale to electronic scale

    Background IntroductionTwo dimensional materials have attracted widespread attention due to their atomic level thickness and unique properties, such as high binding energy, tunable bandgap, and new electronic degrees of freedom (valley electronics). They have many application prospects in fields such as microelectronics, nanophotonics, and nanoenergy. Various two-dimensional materials have their o...

    2024-02-23
    Zobacz tłumaczenie
  • 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
    Zobacz tłumaczenie
  • The Laser Industry Shines at the Expo, showcasing the country's key weapons and disruptive new products

    The China International Industrial Expo is an important window and economic and trade exchange and cooperation platform for China's industrial sector to the world, as well as a window for the world to understand the current development status of China's manufacturing industry. It is understood that the scale, energy level, and number of new exhibits of this year's Industrial Expo are all the highe...

    2023-09-23
    Zobacz tłumaczenie
  • Fundamentals of Next Generation Photonic Semiconductors: Small Lasers

    This week, an illustration was published on the cover of the international journal Science, showcasing a powerful mode-locked laser emitted from a miniature photonic semiconductor.A research team led by Alireza Marandi, a professor of electrical engineering and applied physics at the California Institute of Technology, has successfully developed a conventional mode-locked laser large enough to fit...

    2023-11-13
    Zobacz tłumaczenie
  • Lumiotive and Hokuyo announce the launch of the world's first 3D LiDAR sensor with true solid-state beam steering

    Lumotive, a pioneer in optical semiconductor technology, and Hokuyo Automatic Co., a global leader in sensors and automation, Ltd. announced today the commercial version of the YLM-10LX 3D LiDAR sensor. This breakthrough product features Lumiotive's light controlled metasurface (LCM) ™) Optical beamforming technology represents a significant leap in the application of solid-state programmable opti...

    2024-05-25
    Zobacz tłumaczenie