Polski

Ultra fast plasma for all optical switches and pulse lasers

169
2024-03-26 14:19:24
Zobacz tłumaczenie

Plasmology plays a crucial role in advancing nanophotonics, as plasma structures exhibit a wide range of physical properties that benefit from local and enhanced light matter interactions. These characteristics are utilized in many applications, such as surface enhanced Raman scattering spectroscopy, sensors, and nanolasers.

In addition to these applications, the ultrafast optical response of plasma is also a key characteristic that has been used to achieve optical signal switching across different spectral bands, which is crucial for advanced optical logic circuits and telecommunications systems.
Recently, optical switches have become an important component of the development of all optical computing and signal processing, among which these optical switch devices require enhanced response speed, modulation depth, and wide spectral tunability.

The latest developments in the manufacturing and characterization of plasma nanostructures have stimulated the search for sustained effects in their potential applications in the field of photonics. Professor Liu and his team focus on the role of plasma in photonics, introducing the latest developments in ultrafast plasma materials, with a focus on all optical switches.

By elaborating on the ultrafast process revealed by experimental and theoretical methods, the basic phenomena of plasma light matter interaction and plasma dynamics were discussed, and the use of ultrafast plasma for all optical switching and pulse laser generation was comprehensively explained, with a focus on device design and performance.

Here, they introduce the light matter interactions related to the ultrafast plasma response observed in different plasma materials and structures in the first part, and then explain the theoretical and experimental methods developed to study the ultrafast mechanisms in plasmons.

In the following chapters of this article, they discuss and summarize ultrafast plasma optical switching systems based on the classification of plasma metasurfaces such as precious metals, phase change hybrid materials, conductive oxides, and waveguides. These ultrafast plasma metasurfaces are further divided by spectral bands in the visible and near-infrared ranges. The last section discusses the use of plasma ultrafast optical switches to generate ultrafast pulse lasers.

Ultra fast plasma has been widely used in an increasing number of photonics applications. This review article will serve as a reference for researchers to explore new processes in photonics by combining plasma.
The research results are published in the journal Ultrafast Science.

Source: Laser Net

Powiązane rekomendacje
  • Trumpf China 25 Years: From Model Factory to Global Strategic Fortress

    On March 14, 2000, Trumpf established its first company in China - Trumpf Metal Sheet Products Co., Ltd., headquartered in Taicang, 50 kilometers northwest of Shanghai. Nowadays, Taicang has become a global strategic stronghold for the company. 25 years ago, this production base was originally used to demonstrate sheet metal processing production for Chinese enterprises. In the seventh year afte...

    03-26
    Zobacz tłumaczenie
  • Lockheed Martin announces expansion of 16000 square feet 3D printing center

    Recently, US military industry giant Lockheed Martin announced that it will significantly increase its additive manufacturing capabilities and expand its factory in Texas. The expansion project includes approximately 16000 square feet of dedicated space for 3D printing technology, and the addition of some of the largest large format multi laser printers in the space (it is worth noting that Lockhe...

    2024-12-02
    Zobacz tłumaczenie
  • Huashu High tech launches a large format 12 laser metal 3D printer at TCT Asia

    Chinese industrial 3D printer manufacturer Huashu High tech has launched the FS811M metal powder bed fusion series platform. The FS811M series has a construction volume of 840 x 840 x 960 millimeters and can be equipped with powerful 6, 8, 10, or 12 x 500 watt fiber lasers."As the latest member of the Huashu High tech Metal 3D printer product portfolio, FS811M originates from our joint innovation ...

    2024-05-13
    Zobacz tłumaczenie
  • Yongxin Optics: Launch of the "Multimodal Nanoresolution Microscope" Project

    Recently, the launch and implementation plan demonstration meeting of the "Multimodal Nano Resolution Microscope" project led by Ningbo Yongxin Optics Co., Ltd. was successfully held in Ningbo. This is the fourth time Yongxin Optics has led a national key research and development plan project and received support, indicating that the company's ability to undertake national level technological rese...

    04-10
    Zobacz tłumaczenie
  • Researchers use lasers to measure and manipulate magnetic ripple interactions

    One vision for computing the future is to use ripples in magnetic fields as the fundamental mechanism. In this application, magnetic oscillators can be comparable to electricity and serve as the foundation of electronic products.In traditional digital technology, this magnetic system is expected to be much faster than today's technology, from laptops and smartphones to telecommunications. In quant...

    2024-03-05
    Zobacz tłumaczenie