Tiếng Việt

Progress in Theoretical Research on the Mechanism of Liquid Terahertz Wave Generation by Precision Measurement Institute

143
2024-03-22 15:11:22
Xem bản dịch

Terahertz waves have significant application value in communication and imaging. The nonlinear interaction between strong field ultrafast laser and matter is one of the important ways to generate terahertz waves. The experimental and theoretical research related to terahertz generation media such as plasma, gas, and crystal is relatively sufficient. However, liquid water is a strong absorbing medium for terahertz waves, and there have been no reports of its generation of terahertz waves. In 2017, experiments found that when the thickness of a liquid film or the diameter of a liquid beam decreased to the micrometer level, the radiation of terahertz waves was greater than absorption. This opens up a new direction in the study of liquid terahertz waves.

In recent years, there have been experimental reports in the field of liquid terahertz waves, but many phenomena observed in experiments are different from the results of other media. For example, a monochromatic laser field can effectively generate liquid terahertz waves, while a gas medium requires a specific phase difference of a bicolor laser; The yield of liquid terahertz waves is directly proportional to the energy driving the laser, while in gas media it is a square relationship; The yield of liquid terahertz waves increases with the increase of laser pulse width within a certain range, while the opposite is true for gas media; Under the drive of dual color laser, non modulated signals appear in liquid terahertz waves, but similar signals are not observed in gas media. Theoretical research on complex and disordered liquid phase systems has always been a challenge, and the above phenomena are difficult to explain with existing theories. Researchers can only explain some macroscopic experimental results under high light intensity based on previous plasma models and interface effects.

Recently, Bian Xuebin, a researcher at the Institute of Precision Measurement Science and Technology Innovation of the Chinese Academy of Sciences, and Li Zhengliang, a doctoral candidate, proposed a displacement current model that generates liquid terahertz waves, which can systematically explain a series of anomalies observed in the above experiments. The physical image of the micro mechanism model is shown in the figure: the disordered structure of the liquid localizes the electron wave packet, and the energy of the outer electrons of different molecules is affected by the environment and moves. Under the action of strong field lasers, the outer electrons of different molecules undergo transitions, generating displacement currents in asymmetric systems. The energy difference of these transitions is in the terahertz energy region, which in turn radiates terahertz waves. Meanwhile, this work demonstrates that the quantum effects of atomic nuclei play a crucial role and predicts that terahertz radiation can be used to study the isotopic effects of liquids.

The above achievements are another theoretical advancement of Bian Xuebin's team in the field of liquid phase strong field ultrafast dynamics research, following the high-order harmonic statistical fluctuation model. The related research findings are titled Terahertz radiation induced by shift currents in liquids and published in the Journal of the National Academy of Sciences (PNAS) in the United States. The research work was supported by the National Key Research and Development Program, the National Natural Science Foundation of China, and the Chinese Academy of Sciences Youth Team Program for Stable Support in Basic Research.

Schematic diagram of liquid terahertz wave generation

Source: OFweek

Đề xuất liên quan
  • SEI and Matik showcase the latest laser technology at a joint printing exhibition

    SEI Laser, a leading manufacturer of laser cutting systems, and its North American distributor Matik, Inc. will showcase SEI Laser's three most popular machines at the upcoming Joint Printing Expo. Visit booth C2811 on the C floor of the Joint Printing Expo to watch live demonstrations of MERCURY, X-TYPE, and Labelmaster.MERCURY is the ideal choice for cutting everything from paper and cardboard t...

    2023-10-17
    Xem bản dịch
  • Scientists demonstrate powerful UV-visible infrared full-spectrum laser

    Figure: a. Schematic diagram of the HCF-LN-CPPLN experimental setup. W. CaF? Window M, mirror.b. The bright white light circular spots emitted by the CPPLN sample.c. The first-order diffraction beam of B displays a colorful rainbow pattern from purple to red.d. The HCF-LN-CPPLN module generates normalized spectra of the output full spectrum laser signal through the second NL HHG and third NL SPM e...

    2023-08-25
    Xem bản dịch
  • Filatek: Leading the Development of Laser, Shining "Additive Prince"

    In recent years, the field of laser technology has received widespread attention from the outside world. At that time, the Munich Shanghai Electronic Production Equipment Exhibition was successfully held in Shanghai, and Suzhou Feilaitek Laser Technology Co., Ltd. (hereinafter referred to as "Feilaitek"), a leading enterprise in the field of industrial laser 3D dynamic focusing systems, appeared a...

    2024-04-12
    Xem bản dịch
  • New insights into the interaction between femtosecond laser and living tissue

    The N-linear optical microscope has completely changed our ability to observe and understand complex biological processes. However, light can also harm organisms. However, little is known about the mechanisms behind the irreversible disturbances of strong light on cellular processes.To address this gap, the research teams of Hanieh Fattahi and Daniel Wehner from the Max Planck Institute for Photos...

    2024-06-07
    Xem bản dịch
  • Patterned waveguide enhanced signal amplification within perovskite nanosheets

    Researchers at Busan National University, led by Kwangseuk Kyhm, Professor of Ultra Fast Quantum Optoelectronics from the Department of Optics and Mechatronics, are enhancing signal amplification inside cesium bromide lead perovskite nanosheets through patterned waveguides.Perovskite is a highly attractive material in solar cell applications, but its nanostructure is now being explored as a new la...

    2024-01-10
    Xem bản dịch