繁体中文

Progress in research on neodymium doped strontium aluminate lanthanum magnesium laser crystals by Shanghai Optics and Machinery Institute

686
2024-03-19 16:14:21
查看翻譯

Recently, the Advanced Laser and Optoelectronic Functional Materials Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in the research of Nd: ASL (Sr0.7Nd0.05La0.25Mg0.3Al22.7O19) laser crystals, and the related achievements were published in Infrared Physics&Technology under the title of "Tunable laser operations on Nd doped continuum and lanthanum aluminum crystals".

Neodymium (Nd3+) ion is one of the common activating ions, and its absorption peak matches the emission wavelength of commercial laser diodes (LDs), with high absorption efficiency at 0.9, 1.05, and 1.35 μ There are emission peaks at position m, and laser emission has been achieved in various matrix materials. Nd: ASL is a typical disordered crystal, belonging to the hexagonal crystal system. The high disorder leads to its spectral broadening, which is beneficial for generating lasers of different wavelengths.

In order to investigate its tuning characteristics, the research team grew Nd: ASL crystals with a doping concentration of 5%, and measured their fluorescence lifetime to be approximately 371.8 μ S. At 1.05 μ Near m, its fluorescence spectrum has four strong and continuous emission spectra. A birefringent filter was inserted into the V-shaped resonant cavity for tunable laser experiments. By using output mirrors with transmittance of 5%, 7%, and 10%, three independent wavelengths (1050, 1062, and 1074 nm) of laser output were obtained. The wavelength range is 1049.59-1054.43 nm and 1059.71-1078.18 nm for tuning, with a tuning width greater than 20 nm, which is consistent with the spectrum. The phenomenon of multi wavelength laser output was also observed in the experiment. The results indicate that Nd: ASL crystals are a gain medium suitable for tunable lasers. Compared with single wavelength laser media, controlling and changing the wavelength is much more convenient and suitable for complex application scenarios with higher accuracy or more wavelengths.

This work has received support from projects such as the National Natural Science Foundation of China.


Figure 1. Fluorescence spectrum of Nd: ASL crystal

Figure 2. Laser output with three wavelengths at different output mirror transmittance

Figure 3. Output power at different wavelengths under the same absorption pump power

Source: Shanghai Institute of Optics and Mechanics

相關推薦
  • Researchers Obtaining Scientific Returns from Raman Spectroscopy for External Bioexploration Using Lasers

    We investigated the potential of laser selection in a wide optical range from ultraviolet to visible light, and then to infrared (excitation wavelengths of 325, 532, 785, and 1064 nm), in order to combine and analyze extreme microorganisms related to Earth (such as Cryptomeria elegans, cold floating nematodes, and circular green algae), carbon water compound molecules, as well as simulated mineral...

    2023-10-23
    查看翻譯
  • The construction of Hefei Advanced Light Source Project held a launch ceremony, expected to be completed and released in 5 years

    Recently, in the Future Science City of Hefei City, Anhui Province, the National Major Science and Technology Infrastructure Project and Supporting Projects of Hefei Advanced Light Source announced the start of construction, with a planned land area of approximately 656 acres. The first phase of the project is expected to be completed by September 2028.After completion, it will become an internati...

    2023-09-23
    查看翻譯
  • 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
    查看翻譯
  • Scientists develop photo activated glass for clean energy production

    Japanese and Swiss scientists have collaborated to develop glass that can generate electricity under light, which may pave the way for sustainable energy production. Researchers from Tokyo Institute of Technology and the Swiss Federal Institute of Technology in Lausanne used femtosecond lasers to etch circuits on glass surfaces, resulting in the unexpected generation of semiconductor crystals.The ...

    2024-03-11
    查看翻譯
  • Accurate measurement of neptunium ionization potential using new laser technology

    Neptunium is the main radioactive component of nuclear waste, with a complex atomic structure that can be explored through mass spectrometry. This analysis is crucial for understanding its inherent characteristics and determining the isotopic composition of neptunium waste. Magdalena Kaja and her team from Johannes Gutenberg University in Mainz, Germany have developed a novel laser spectroscopy te...

    2024-05-11
    查看翻譯