Español

Breakthrough development of terahertz quantum cascade lasers

462
2024-01-04 14:00:18
Ver traducción

With the development of groundbreaking components for terahertz quantum cascade lasers, a huge leap has been made in the field of laser technology. A group of researchers have successfully designed a broadband single-chip external coupler with the potential to redefine the functionality of terahertz QCL.

The new external coupler is fundamentally based on planar bimetallic waveguides. Its design is specifically aimed at addressing the long-term challenges of reflectivity design and broadband narrow beam transmission in terahertz QCL. The outstanding feature of this external coupler is its ability to fine tune the mirror reflectivity of the waveguide. This is achieved by using efficient reverse design algorithms to shape the end face.

The terahertz laser radiation generated by the system is combined with broadband patch array antennas. The combination of these components leads to the convenience of surface emission. The entire system, including all its components, has been optimized to support octave frequency crossing in the range of 2-4 THz.

These advances have been put into practice through demonstrations of broadband surface emitting terahertz quantum cascade laser frequency combs. This special laser frequency comb has already demonstrated impressive performance indicators. It can output a power of 13 milliwatts and has an optical bandwidth of over 800 gigahertz and a single lobe far-field mode. It still maintains a beam divergence of less than 20 degrees in both horizontal and vertical dimensions.

In addition, this work plays a crucial role in the empirical observation of terahertz waves generated in a cascaded manner under non collinear phase matching conditions in terahertz parameter generators. Researchers effectively induce cascades using high-power seed beams to detect new high-order terahertz waves near the end face.

This development is a major step forward in the fields of terahertz wave sources, parameter detection, and amplification. It not only enhances the output power of terahertz sources, but also provides a way for theoretical exploration of parameterized TH wave generation.

This breakthrough represents significant progress in the field of laser technology and may pave the way for new possibilities for terahertz applications. It reflects the intricate interaction between technology and humanity, further blurring boundaries and expanding our understanding of possibilities.

Source: Laser Net

Recomendaciones relacionadas
  • Northeastern University of Japan: Breakthrough Laser Technology for Nanoscale Laser Processing

    In the fields of optics and micro/nano processing, precise manipulation of lasers to meet the growing demand for miniaturization is an important challenge in driving the development of modern electronic and biomedical equipment. Recently, researchers from Tohoku University in Japan successfully demonstrated the use of interference technology to enhance the longitudinal electric field of radially p...

    2024-04-12
    Ver traducción
  • 253 million US dollars! This Canadian medical fiber optic sensor manufacturer will be acquired

    Recently, Haemantics Corporation, which focuses on providing innovative medical solutions with proprietary optical technology, announced that the company has reached a final agreement. According to the agreement, Haemonics will acquire all outstanding shares of Canadian fiber optic sensor manufacturer OpSens for CAD 2.90 per share.This is an all cash transaction with a fully diluted equity value o...

    2023-10-18
    Ver traducción
  • Shanghai Optics and Machinery Institute has made progress in the research of new terahertz sources based on Yb lasers

    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 crys...

    2024-04-09
    Ver traducción
  • ALPD laser projection technology enters the Middle East market

    With the continuous growth of user numbers and usage duration, the quality and reliability of the ALPD laser projection solution independently developed by the global laser display leader Guangfeng Technology (688007. SH) have been increasingly recognized by more and more users.It is reported that VOX Cinemas, a well-known cinema line in the Middle East, has also joined the ALPD laser projection s...

    2024-08-07
    Ver traducción
  • Magdalena Ridge expands the capacity of optical interferometers

    The Magdalena Ridge Observatory has purchased a second-generation off-axis beam compressor from Optical Surface, which will expand the functionality of the facility's optical interferometer.Interferometer is a research tool that combines two or more light sources to create interference patterns that can be measured and analyzed. In astronomy, interferometers combine the light collected by multiple...

    2024-01-05
    Ver traducción