Tiếng Việt

Beijing Institute of Technology has made significant progress in the study of ultrafast carrier dynamics in optoelectronic functional crystals

683
2024-02-21 14:08:27
Xem bản dịch

Recently, teachers and students from the Institute of Solid State Laser and Ultrafast Photonics at the School of Physics and Optoelectronic Engineering have made significant progress in the study of ultrafast carrier dynamics in optoelectronic functional crystals. The related research results are titled "Anisotropic carrier dynamics and laser fabricated luminosity patterns on oriented single crystal perovskite wafers" and published online in the international authoritative journal Nature Communications, The research results are of great significance for promoting the practical application process of functional crystals in the field of optoelectronics.

The first author of the paper is Beijing University of Technology, with Ge Chao, an assistant researcher at the School of Physics and Optoelectronic Engineering, and Li Yachao, a doctoral student, as co first authors. Ge Chao, an assistant researcher at Beijing University of Technology, and Song Haiying, an associate researcher, are co corresponding authors. Professor Zhang Wenkai from Beijing Normal University and Professor Liu Yang from Shandong University are also co corresponding authors. This study has been supported by projects such as the National Natural Science Foundation of China and the Beijing Municipal Education Commission Research Program.

In recent years, perovskite materials and their applications in the field of optoelectronics have attracted widespread attention. However, a deep understanding of their anisotropic behavior in ultrafast carrier dynamics is still insufficient. To compensate for this deficiency, the research team, based on high-quality MAPbBr3 single crystal wafers with different orientations, for the first time revealed the polarization of photo excited charge carriers within crystal planes with different orientations and the anisotropic dynamic evolution between crystal planes at the picosecond time scale. This discovery provides a deeper understanding of the relaxation pathways of ultrafast charge carriers from a crystallographic perspective, which is of great significance for exploring and expanding the applications of perovskite single crystals in the field of ultrafast optoelectronics, such as light modulators, high-speed polarization sensors, and ballistic transistors.

In addition, by using femtosecond laser two-photon processing technology, the research team successfully prepared three orders of magnitude fluorescence enhanced luminescent patterns. An in-depth analysis of the fluorescence enhancement mechanism from the perspectives of multidimensional space (bulk and micro/nanoscale) and time (steady-state and transient) provides a convenient top-down strategy for improving the photoluminescence intensity of bulk crystals. This study provides a profound understanding of the ultrafast carrier dynamics of MAPbBr3 from a crystallographic perspective, with the hope of providing more guidance for the orientation selection and utilization of perovskite hot carriers in optoelectronics in the future.

The dynamic evolution of photo excited charge carriers on the (100), (110), and (111) crystal planes of MAPbBr3 and the mechanism of femtosecond laser-induced fluorescence enhancement.

Source: OFweek

Đề xuất liên quan
  • The Linac Coherent Light Source II X-ray Laser in the United States has completed over a decade of upgrading and emitted the first X-ray with a record breaking brightness

    According to reports, the Linac Coherent Light Source II (LCLS-II) X-ray laser at the Stanford SLAC National Accelerator Laboratory in the United States has just completed an upgrade that took more than a decade. After a facelift, it has become the world's brightest X-ray facility and emitted the first record breaking X-ray, allowing researchers to record the behavior of atoms and molecules in bio...

    2023-09-20
    Xem bản dịch
  • Dark Solitons Discovered in Ring Semiconductor Lasers

    Dark solitons - the extinction region in a bright background - spontaneously form in a ring semiconductor laser. Observations conducted by an international research group may lead to improvements in molecular spectroscopy and integrated optoelectronics.Frequency comb - a pulse laser that outputs light at equidistant frequencies - is one of the most important achievements in the history of laser ph...

    2024-02-01
    Xem bản dịch
  • Cobot Systems announces the establishment of a partnership between UR+and its laser welding collaborative robot system

    Cobot Systems announced that it has now become a UR+partner and showcased laser welding unit systems. This honor marks an important milestone in the company's journey of providing widely available automated labor solutions. This approval highlights Cobot Systems' commitment to providing innovative solutions compatible with UoRobot (UR) products, ensuring seamless collaboration with integrated lase...

    2024-05-16
    Xem bản dịch
  • Application and Effect of Laser Cleaning

    Mold cleaning: Mold plays a very important role in industrial production. Currently, there are over a thousand mold related enterprises in China, driving the related output value to nearly 10 billion yuan. Among them, mold cleaning is an essential step in mold production. Laser can achieve contactless cleaning of molds, which is very safe for the surface of the mold, ensuring its accuracy, and can...

    2023-10-14
    Xem bản dịch
  • Progress in research on intrinsic flexible and stretchable optoelectronic devices in the Institute of Chemistry

    Organic polymer semiconductor materials, due to their unique molecular structure and weak van der Waals interactions, are endowed with the characteristics of soluble processing and easy flexibility, and have potential applications in portable and implantable medical monitoring devices. A highly flexible, skin conformal, and excellent spatial resolution X-ray detector is expected to be integrated w...

    2024-04-09
    Xem bản dịch