Türkçe

Shanghai Optics and Machinery Institute has made progress in the research of new terahertz sources based on Yb lasers

521
2024-04-09 15:40:54
Çeviriyi gör

Recently, the State Key Laboratory of Intense Field Laser Physics of the Chinese Academy of Sciences Shanghai Institute of Optics and Fine Mechanics has made new progress in generating intense field terahertz waves based on Yb laser pumped organic crystals. The relevant research results were published in Applied Physics Letters under the title "Efficient strong field THz generation from DSTMS crystal pumped by 1030nm Yb laser".

Compared to inorganic crystals such as ZnTe and LiNbO3, organic crystals such as DAST and DSTMS have higher nonlinear coefficients and lower absorption coefficients in the terahertz frequency band. In previous studies, infrared ultra short pulse lasers with wavelengths ranging from 1200 to 1700nm were generally used to pump organic crystals for better phase matching and higher terahertz conversion efficiency. However, obtaining high-energy ultra short laser pulses in this band requires frequency conversion using techniques such as OP (CP) A, which not only greatly reduces energy conversion efficiency and system stability, but also increases equipment cost and complexity. In recent years, ultrafast Yb lasers have received attention from the scientific and industrial communities due to their advantages in low cost, high power, and miniaturization. The use of Yb laser to directly drive crystals to generate terahertz waves provides ideas for the development of integrated terahertz sources, as well as opportunities for the development of related scientific research and application fields.

This study elucidates the phase matching conditions for the generation of terahertz waves by organic crystal optical rectification pumped by ultra short pulse lasers, and analyzes the dependence of terahertz frequency, coherence length, etc. on the pumped laser. The research team utilized Yb laser pumped organic crystal DSTMS to generate strong field terahertz. By designing phase matching in the terahertz band and optimizing conditions such as pump laser pulse width and power density, a single pulse energy of 0.4 is obtained μ J. A strong field terahertz wave with a peak field strength of 236 kV/cm, covering a frequency spectrum of 0.1-6 THz, and a laser terahertz wave energy conversion efficiency of 0.22%. The above relevant experiments have verified the feasibility of Yb laser pumping organic crystals to generate milliwatt level high-power strong field terahertz waves, providing a new integrated terahertz light source scheme for scientific research and application promotion in related fields.

Relevant work has been supported by the national key research and development plan, the National Natural Science Foundation of China, and the Chinese Academy of Sciences instrument and equipment development project.

Figure 1. Generation and characterization of strong field terahertz waves (a) Experimental optical path; (b) Terahertz time-domain waveform and spectrum (illustrated as terahertz focal spot).

Figure 2. Laser terahertz wave phase matching (a) The refractive index of DSTMS crystal in the infrared and terahertz bands; (b) The dependence of terahertz frequency, coherence length, etc. on the wavelength of the pump laser; (c) The terahertz coherence length at a pump laser wavelength of 1030 nm; (d) The absorption characteristics of DSTMS crystals in the infrared and terahertz bands.

Source: Shanghai Institute of Optics and Mechanics

İlgili öneriler
  • Progress made by the Precision Measurement Institute in Thorium Ion Trapping Research

    Recently, the Cold Molecular Ion Research Group of the Institute of Precision Measurement has made significant progress in the loading, trapping, and recognition of thorium ions. The related research results have been published as cover and selected articles in the international physics journal Journal of Applied Physics, titled "Loading and identifying variable charged thorium ions in a linear io...

    2024-06-21
    Çeviriyi gör
  • The Indian medical laser market has entered a rapid growth mode

    According to industry forecasts, the medical laser market in India, especially in the field of medical aesthetics, is expected to be worth up to 71572 million rupees in fiscal year 2023. It is expected that this number will increase to 1.8358 billion rupees by fiscal year 2031, with a compound annual growth rate of 12.49%.Alma Medical, a global innovator in the field of medical lasers in Israel, h...

    2024-07-05
    Çeviriyi gör
  • Blue Laser Fusion plans to commercialize nuclear fusion reactors using laser technology by 2030

    Recently, a start-up company co founded by Nobel laureate Hideyoshi Nakamura in San Francisco plans to commercialize nuclear fusion reactors using laser technology around 2030.Hideyoshi Nakamura won the 2014 Nobel Prize in Physics for inventing blue light-emitting diodes. He founded Blue Laser Fusion in Palo Alto, California in November 2022. Partners include Hiroaki Ohta, former CEO of drone manu...

    2023-08-21
    Çeviriyi gör
  • 20 million dollars! Undersea fiber optic agreement reached, fully operational by 2026

    Recently, Confluence Networks LLC has announced a long-term partnership agreement with Laser Light Communications Inc., a developer and provider of software controlled optical network services.According to the agreement, Laser Light will adopt Confluence-1 submarine fiber optic network, which Confluence Networks is about to launch, as the core part of its global network. The protocol will last for...

    2024-05-24
    Çeviriyi gör
  • Shanghai Optics and Machinery Institute has made progress in the development of picosecond reflectors based on composite materials

    Recently, the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made progress in the research of picosecond reflectors based on composite materials. The relevant research results are titled "Hybrid material based mirror coatings for picosecond laser applications" and published in Optics and Laser Techn...

    2024-06-12
    Çeviriyi gör