Español

Research Progress in High Efficiency Supercontinuum Spectra in Specific Wavebands Made by Shanghai Optics and Machinery High Power Laser Unit Technology Laboratory

518
2023-10-17 14:20:46
Ver traducción

Recently, the High Power Laser Unit Technology Laboratory of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in research on high efficiency supercontinuum in specific bands. The relevant research results were published in the Journal of Lightwave Technology under the title of "Strong Anti Stokes and flat supercontinuum in specified band based on non generated Raman four wave mixing module".

The generation of supercontinuum spectrum is due to the coupling effect of dispersion and a large number of nonlinear effects, resulting in extremely wide spectral expansion. Due to its advantages such as wide bandwidth and high brightness, supercontinuum spectroscopy provides ultra wide light sources for many studies and has been applied in various fields such as microscopic living cell imaging, optical coherence tomography, and hyperspectral radar imaging. Supercontinuum spectra typically have widths of one to several octaves.

However, in practical applications, a very wide spectrum is not required. Considering that the spectrum of useless bands is a waste of energy, reduces efficiency, and leads to additional optical damage, it is necessary to achieve a wide and flat spectrum in specific bands. Customizing the shape of supercontinuum spectrum according to needs and limiting the spectrum to the band of interest has always been a controversial and difficult problem in supercontinuum spectrum research.

This study proposes a specific band flattened supercontinuum spectral method based on non degenerate Raman four wave mixing modulation. By controlling the dispersion of photonic crystal fibers and the peak power of the pump light, the gain of non degenerate Raman four-wave mixing is located in the required frequency bands for various application scenarios. This provides a new method for achieving supercontinuum spectra with broadband and high spectral intensity in the shortwave rectangular direction. Through this method, we developed a near-infrared flat supercontinuum spectrum with a spectral intensity of 3dB corresponding to a bandwidth of 420nm at the center wavelength of 800nm.

In addition, the relative intensity of anti Stokes light is 75.2%, and 49.6% of the total spectral energy is concentrated in the 610-1030 nm band, which provides a more effective light source for optical coherence tomography scanning. Using this supercontinuum spectrum as the light source for OCT can greatly improve axial resolution.

Figure 1 (a) Supercontinuum spectral spectra of pumps at different powers
(b) High efficiency ultra flat supercontinuum spectroscopy

Source: China Optical Journal Network

Recomendaciones relacionadas
  • ZLDS100, a British high frequency laser displacement sensor, monitors multipoint vibration of silencers

    A muffler is a key component of a car's exhaust system, designed to reduce noise levels and emissions. The vibration of a muffler can have a significant impact on its performance and life. In order to understand the performance and behavior of the muffler, it is necessary to make multi-point vibration measurement. First, it enables engineers to assess the structural integrity and durability of a m...

    2023-08-04
    Ver traducción
  • Scientists develop flat-topped laser beams to overcome Gaussian distribution limitations

    The beam emitted by almost all laser systems follows the Angle pattern of Gaussian distribution. The Gaussian irradiance distribution means that irradiance has a smooth peak at the center point and slowly declines toward the edge. In theory, the irradiance level of a Gaussian distribution can never reach zero, which means that the distribution can expand indefinitely. This phenomenon in the laser ...

    2023-08-04
    Ver traducción
  • Panacol showcases a new optical grade adhesive on Photonics West

    Panacol will showcase new optical grade resins and adhesives for embossing and optical bonding applications at the SPIE Photonics West exhibition held in San Francisco, California, USA from January 30 to February 1, 2024.These new adhesives can be used for sensors in lightweight carpets, smart devices, and wearable devices in the automotive industry, or for generating structured light in projector...

    2023-12-12
    Ver traducción
  • Scientists have used 3D integration technology to bring ultra-low noise lasers without isolators to silicon photonics

    After electronic integrated circuits (Eics), silicon (Si) photonics technology is expected to achieve photonic integrated circuits (PIC) with high density, advanced functions and portability. Although various silicon photonics fountifiers are rapidly developing PIC capabilities to enable mass production of modulators, photodetectors and, more recently, lasers, silicon PIC has not yet met the strin...

    2023-08-04
    Ver traducción
  • Fraunhofer ISE develops a faster laser system for wafer processing

    By using a new type of laser, the processing speed of wafers can be 10 to 20 times faster than before. This is the result of a research project at the Fraunhofer Institute for Solar Systems in Germany.Researchers have developed a prototype that can use ultraviolet waves to carve the most intricate structures on silicon wafers. The new system concept enables solar cell manufacturers to perform lase...

    2023-12-23
    Ver traducción