日本語

Tiny yet Powerful: How Lasers on Chips Change the Game Rules of Photonics

349
2023-12-27 13:50:03
翻訳を見る

Chip level ultrafast mode-locked laser based on nanophotonic lithium niobate.
Researchers have created a compact mode-locked laser integrated into a nanophotonic platform, capable of generating high-power and ultrafast optical pulses. The breakthrough in miniaturization of MLL technology can significantly expand the application of photonics.

Innovation in mode-locked laser technology
To improve the technology that typically requires bulky desktop devices, Quishi Guo and his colleagues reduced the size of mode-locked lasers to optical chips with integrated nanophoton platforms. The research results show that it provides prospects for the development of ultrafast nanophotonic systems for widespread applications.

The potential of miniaturizing MLL
A mode-locked laser can generate coherent ultra short optical pulses at an extremely fast speed - approximately picoseconds and femtoseconds. These devices have achieved many technologies in the field of photonics, including extreme nonlinear optics, two-photon microscopy, and optical computing.

However, most MLLs are expensive, require high power consumption, and require bulky discrete optical components and equipment. Therefore, the use of ultrafast photon systems is usually limited to desktop laboratory experiments. More importantly, the so-called "integrated" MLL used to drive nanophotonic platforms has key limitations, such as low peak power and lack of controllability.

Breakthrough in Nanophoton MLL Integration
Guo et al. created an optical chip sized integrated MLL by mixing semiconductor optical amplifier chips with a novel thin film lithium niobate nanophotonic circuit.

According to the author, MLL generates ultra short to 4.8 picosecond light pulses at approximately 1065 nanometers, with a peak power of~0.5 watts - the highest output pulse energy and peak power of any integrated MLL in the nanophotonic platform.

In addition, researchers have shown that the repetition rate of integrated MLL can be tuned in the range of~200 MHz and the coherent characteristics of the laser can be precisely controlled, providing a pathway for a completely stable on-chip nanophoton frequency comb source.

Source: Laser Net



関連のおすすめ
  • The researchers used ultrafast lasers to create nanoscale photonic crystals

    The optical properties of photonic crystals are closely related to their lattice constants, which are usually required to be in the same order of magnitude as the operating wavelength. In a crystal material, the photonic crystal structure is formed by the periodic arrangement in space of units whose dielectric constant is different from that of the crystal itself, and whose lattice constant depend...

    2023-08-04
    翻訳を見る
  • The role of PTFE in laser processing

    Polytetrafluoroethylene (PTFE) has improved the efficiency and repeatability of nanosecond and picosecond laser processing technologies used in microelectronics and display glass manufacturing. In the field of precision manufacturing, the demand for efficient and repeatable processes is crucial. The laser structure of glass and laser ablation of silicon substrates are key areas where precision p...

    2024-07-26
    翻訳を見る
  • UCI Cinemas collaborates with The Marvels to launch its new 4K laser projector

    Cinemas are in a developmental stage. Their roles are changing and the rules are being rewritten. Many people have proposed a way to make cinemas a truly unique place by providing audiences with a higher quality experience. It is along this route that UCI Cinemas continues to move forward. In recent days, it has officially launched a 4K laser projector and had a special date with the new MCU movie...

    2023-11-14
    翻訳を見る
  • Analysis of Development Prospects and Technological Trends in the Optical Industry

    As a core supporting field of modern technology, the optical industry has broad and diversified development prospects, benefiting from the cross drive of multiple emerging technologies. The following is a systematic analysis from the perspectives of technology trends, application areas, challenges, and opportunities: Core driving forces and growth areas1. Optical communication and 5G/6GDemand ex...

    04-30
    翻訳を見る
  • The new progress of deep ultraviolet laser technology is expected to change countless applications in science and industry

    Researchers have developed a 60 milliwatt solid-state DUV laser with a wavelength of 193 nanometers using LBO crystals, setting a new benchmark for efficiency values.In the fields of science and technology, utilizing coherent light sources in deep ultraviolet (DUV) regions is of great significance for various applications such as lithography, defect detection, metrology, and spectroscopy. Traditio...

    2024-04-10
    翻訳を見る