Français

Researchers have developed a QCL DFB continuous laser for gas detection

471
2023-08-16 14:22:27
Voir la traduction

Alpes Laser was founded in 1998 in Nazhatel, Switzerland and was the first company to bring quantum cascade lasers to the market. It released its first continuous laser in 2001 and its first high gain laser in 2009, thus maintaining this priority position.

In 2004, the first commercial laser was introduced.

Principle: In a single mode laser, the grating is etched into the active region to force the laser to operate at a very specific wavelength determined by the periodicity of the grating. Therefore, the laser emits in a unique spectral mode, which can be slightly adjusted by changing the temperature of the active region.

Gas detection

Continuous single mode lasers have a narrow linewidth, making them an ideal choice for gas detection. They can be adjusted within a maximum range of 10 cm-1; There are multiple modulation schemes available for different purposes. CW-DFB lasers (for continuous wave and distributed feedback) are mainly used in spectroscopy.

Available wavelengths between~625cm-1 and 2500cm-1 (4-16 μ m) Between, the power is 5-100mW. These lasers operate at room temperature. They are provided in the form of chips, base chips, or boxes, with functions such as temperature control, collimation, and fiber coupling.

Other applications: dual frequency comb high-resolution spectroscopy

A quantum cascade laser frequency comb is a device that emits light over a wide spectrum composed of equidistant peaks in the frequency space. Due to the fixed distance between these peaks, which is usually given by the repetition rate of ultrashort pulse sequences, they can be used as frequency domain benchmarks for frequency comb spectra.

In the mid infrared region, quantum cascade lasers that have been specifically studied for optical dispersion have been proven to emit wide and powerful optical frequency combs. Like ultra short pulse lasers, the mode spacing of QCL combs is given by the cavity length. However, in the case of QCL, the periodic modulation in the time domain is FM, not AM, so the output power is constant.

Unlike other comb like technologies, QCL based combs integrate pump lasers and microcavities into their waveguides. This makes it a very compact source. Based on QCL technology, these comb shaped devices can be manufactured across MWIR and LWIR.

The double comb spectrum depends on two local oscillators (OFCs), with slightly different peak spacing. The heterodyne beat frequency of two such combs consists of equally spaced peaks, representing the spectrum of laser in the RF domain.

QCL based dual comb spectroscopy provides the possibility of collecting high-resolution spectra in a wide spectral range of tens of cm-1 and in extremely short acquisition time (i.e. near real-time) at the µ s level. This technology combines the advantages of DFB QCL (i.e. narrow linewidth and mode hopping free tuning) with the large wavelength coverage of external cavity QCL.

Source: Laser Network


Recommandations associées
  • Outstanding Optical Technologies at the 2025 Western Optoelectronics Exhibition in the United States

    In the long history of technological development, every major breakthrough in technology is like a shining star, illuminating the path forward for humanity. At the Photonics West conference in 2025, numerous breakthroughs in cutting-edge photonics technologies attracted the attention of the global academic and industrial communities. Several important technological advancements reported in this ex...

    02-12
    Voir la traduction
  • The research team has solved decades long challenges in the field of microscopy

    When observing biological samples under a microscope, if the medium in which the objective lens is located is different from the sample, the light beam will be interfered with. For example, when observing a water sample with a lens surrounded by air, the light bends more strongly in the air around the lens than in water.This interference can cause the measured sample depth to be smaller than the a...

    2024-04-27
    Voir la traduction
  • Processing application of ultrafast laser on bulk metallic glass

    Recently, an international research team led by Professor Zhang Peilei from the School of Materials Science and Engineering at Shanghai University of Engineering and Technology published a review paper titled "Research status of femtosecond lasers and nanosecond lasers processing on bulk metallic glasses (BMGs)" in the renowned journal Optics&Laser Technology in the field of optics and lasers....

    2023-09-18
    Voir la traduction
  • IPG Photonics has unveiled a new dual-beam laser with single-mode core power at the Novi Battery Show in Michigan

    IPG Photonics Corporation, a global leader in fiber laser technology, will highlight new and innovative laser solutions at the Battery Show from September 12 to 14, 2023 in Novi, Michigan, USA.The IPG booth will include industry-leading fiber laser sources and automated laser systems for electric vehicle battery welding applications.New laser technology pushes the limits of battery welding speedTo...

    2023-09-12
    Voir la traduction
  • Nature Photonics | New Comb Laser Assists Stable and Efficient Generation of Multi wavelength Signals

    Recently, researchers have developed a comb laser with higher stability and efficiency. The use of synthetic reflection self injection locking micro comb design enables the laser to achieve stability and increase conversion efficiency by more than 15 times. This efficient, stable, and easy to manufacture design is expected to make rapid progress in fields such as portable sensors, autonomous navig...

    2024-03-02
    Voir la traduction