Português

Nankai University makes progress in the field of free electron photon interactions

552
2025-02-11 15:45:36
Ver tradução

Recently, a research team led by Professor Cai Wei and Professor Xu Jingjun from the School of Physical Sciences at Nankai University has experimentally confirmed for the first time the generation of polaritons, also known as Smith Purcell radiation, at the two-dimensional scale, and further demonstrated the ability of free electrons to regulate two-dimensional Smith Purcell radiation. The research findings were published online in the internationally renowned journal Physical Review Letters under the title "Smith Purcell Radiation in Two Dimensions".

Electron photon interaction is one of the core topics in physics research. When free electrons bombard an optical structure or pass through its vicinity, it can generate electromagnetic radiation, a phenomenon commonly known as free electron radiation (or cathodoluminescence). The most famous example of free electron coherent radiation is Cherenkov radiation, which has significant applications in high-energy particle detection and was awarded the Nobel Prize in Physics in 1958. As an extension of Cherenkov radiation, Smith Purcell radiation can be generated when charged particles fly over periodic structured surfaces, providing a new solution for utilizing electrons to generate and manipulate light.

Over the past 70 years, the use of Smith Purcell radiation to generate light in three-dimensional space has attracted widespread attention. In recent years, with the rise of nanophotonics and two-dimensional materials, free electrons have injected new vitality into this field as efficient sources of photoexcitation, attracting attention from physicists, materials scientists, engineers, and other fields. As one of the important physical mechanisms for the generation of on-chip light sources, the generation and regulation of two-dimensional Smith Purcell radiation has become a critical issue that urgently needs to be addressed.

The figure shows a schematic diagram of two-dimensional Smith Purcell radiation generated by a free electron excitation periodic nanopore array

The research team observed two-dimensional Smith Purcell radiation through the interaction between free electrons and the designed metal nanopore array, and further demonstrated the active controllability of the two-dimensional Smith Purcell radiation direction by introducing the two-dimensional phased array radar effect. This innovative achievement not only deepens the understanding of the interaction between free electrons and light, but also has significant implications for constructing two-dimensional optical platforms that utilize electrons for generation and manipulation.

This work was first completed by Nankai University, with Sun Zhiguo, a doctoral student from Nankai University, as the first author, and Professors Cai Wei and Xu Jingjun from Nankai University as co corresponding authors. The relevant work has received funding from key research and development projects of the Ministry of Science and Technology of China, major projects of basic and applied basic research in Guangdong Province, and projects funded by the National Natural Science Foundation of China.

Source: opticsky

Recomendações relacionadas
  • Trumpf and SiMa. ai collaboration to develop AI laser

    Recently, Trumpf Group, a leading global provider of machine tools and laser technology solutions, announced that it has partnered with software company SiMa AI has signed a partnership agreement to develop lasers with artificial intelligence (AI).It is reported that SiMa. ai is a software centric embedded edge machine learning chip system company, and the goal of both parties is to equip Trumpf'...

    2024-07-19
    Ver tradução
  • Laser Photonics, the "dark horse" of laser cleaning, plans to build a new factory of nearly 50000 square meters in North America

    On July 2nd local time, Laser Photonics, the dark horse of laser cleaning, announced a major expansion plan: to build a modern new factory covering an area of 50000 square feet (approximately 4645.152 square meters) in Lake Mary, Florida, USA.This expansion marks a firm manifestation of Laser Photonics' confidence in the sustained growth of the North American and even global markets, and also sig...

    2024-07-04
    Ver tradução
  • Researchers have created the first organic semiconductor laser that can be operated without the need for a separate light source

    Researchers at the University of St. Andrews in Scotland have manufactured the first organic semiconductor laser to operate without the need for a separate light source - which has proven to be extremely challenging. The new all electric driven laser is more compact than previous devices and operates in the visible light region of the electromagnetic spectrum. Therefore, its developers stated that...

    2023-11-15
    Ver tradução
  • Diffractive optical elements: the behind the scenes hero of structured light laser technology

    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 Ho...

    2024-04-10
    Ver tradução
  • Coherent Axon laser won the 2023 Business Innovation Award from the British Physical Society

    One of the laser leaders in the field of life sciences, Coherent Gao Yi (New York Stock Exchange: COHR), recently announced that its Axon laser won the 2023 Business Innovation Award at the awards ceremony held by the British Physical Society on October 30th.Dr. Vincent D. Mattera, Jr., Chairman and CEO of Coherent, stated that, Coherent, especially our team at the Center for Excellence in Ultrafa...

    2023-11-03
    Ver tradução