简体中文

Advanced OPA enhances the energy of attosecond imaging ultra short pulses

126
2024-05-11 16:03:34
查看翻译

The attosecond level ultra short laser pulse provides a powerful method for detecting and imaging ultra short processes, such as the motion of electrons in atoms and molecules.

Although ultra short laser pulses can be generated, generating ultra short and high-energy pulses is a continuous challenge. In order to expand the photon energy, photon flux, and continuous bandwidth of isolated attosecond pulses, it is necessary to develop stable, high-energy, and long wavelength single period laser sources.

Researchers at the RIKEN Advanced Photonics Center have developed a method for generating high-energy single cycle MIR pulses. This method is called Advanced Dual Chirp Optical Parametric Amplification (Advanced DC-OPA), which increases the energy of a single cycle laser pulse by 50 times and can be used to generate extremely short pulses with a peak power of 6 terawatts.

"At present, the output energy of attosecond lasers is extremely low," said researcher Eiji Takahashi. "If they are to be used as light sources for a wide range of fields, increasing their output energy is crucial."

Researchers used two types of nonlinear crystals to develop advanced DC-OPA - bismuth triborate oxide (BiB3O6) and lithium niobate doped with magnesium oxide (MgO: LiNbO3). The crystal magnifies the complementary regions of the spectrum.

Takahashi said, "The advanced DC-OPA for amplifying single cycle laser pulses is very simple, based only on a combination of two nonlinear crystals." "What surprised me was that such a simple concept provided a new amplification technology and brought breakthroughs in the development of high-energy, ultrafast lasers."

The damage threshold of nonlinear crystals limits the energy scalability of OPA under high pulse energy. Takahashi said, "The biggest bottleneck in the development of high-energy and ultrafast infrared laser sources is the lack of effective methods for directly amplifying single cycle laser pulses." "This bottleneck results in a millijoule barrier in the energy of single cycle laser pulses."

The advanced DC-OPA method overcomes the bottleneck of pulse energy scalability using single cycle IR/MIR laser systems.

The team expects that advanced DC-OPA methods will drive the development of attosecond laser technology forward. Takahashi said, "We have successfully developed a new laser amplification method that can increase the intensity of a single cycle laser pulse to terawatt level peak power." "This is undoubtedly a significant leap in the development of high-power attosecond lasers."

Due to the excellent energy scalability of the advanced DC-OPA method, laser pulses with higher pulse energy and fewer pulse duration cycles can be achieved based on different crystal combinations and higher pump energy. The extension of pulse energy can promote high-throughput detection conditions in strong field physics research.

Takahashi believes that by capturing the motion of electrons, attosecond lasers have made significant contributions to fundamental science. "They are expected to be used in a wide range of fields, including observing biological cells, developing new materials, and diagnosing medical conditions," he said.

The ultimate goal of Takahashi is to exceed the speed of the attosecond laser and generate shorter pulses. "By combining a single period laser with higher-order nonlinear optical effects, it is possible to generate optical pulses with a time width of Ze seconds (one Ze second=10-21 seconds)," he said. "My long-term goal is to open the door to research on Zeosecond lasers and open up the next generation of ultra short lasers after Atosecond lasers."

Source: Laser Net

相关推荐
  • X photon 3D nanolithography

    Virtual and Physical Prototypes: X-ray laser direct writing 3D nanolithography.Multi-photon polymerization (MPP), also known as 3D nanoprinting, has been investigated using wavelength-tunable femtosecond lasers. At a fixed pulse width of 100 fs, any spectral color in the range of 500nm to 1200nm can be used, which reveals the interaction of more subtle photophysical mechanisms than two-photon phot...

    2023-09-11
    查看翻译
  • Upgrading 3000W fiber laser to high energy and miniaturization has become a new trend

    Recently, the discussion on "miniaturization" in the domestic laser industry has become increasingly heated. From various exhibition venues, miniaturization and lightweight have become important display directions for fiber laser manufacturers.High energy and miniaturization have become new trendsIn the past few years, high-power has undoubtedly been the main development direction in the field of ...

    2023-09-20
    查看翻译
  • Europe builds an independent supply chain for Alexander laser crystals for space missions and atmospheric research

    Recently, companies from Lithuania, Italy, and Germany have reached a new milestone in the European independent space mission - based on the Galactic project, they have developed a supply chain for Alexandrite laser crystals in Europe to study changes in the atmosphere and Earth's surface.The high-power Alexander laser crystals and coatings developed in the GALACTIC project will be used to collect...

    2023-12-22
    查看翻译
  • Laser giant announces launch of new fiber laser platform

    Recently, Coherent Corp. announced the launch of the EDGE FL TM high-power fiber laser series, tailored specifically for cutting applications in the machine tool industry. The power levels of the EDGE FL series range from 1.5kW to 20kW, redefining the balance between value and performance to meet the growing demand for high-power, reliable laser sources in fiber laser cutting.With the increasing d...

    2024-10-23
    查看翻译
  • Laser Photonics, the "dark horse" of laser cleaning, plans to build a new factory of nearly 50000 square meters in North America

    On July 2nd local time, Laser Photonics, the dark horse of laser cleaning, announced a major expansion plan: to build a modern new factory covering an area of 50000 square feet (approximately 4645.152 square meters) in Lake Mary, Florida, USA.This expansion marks a firm manifestation of Laser Photonics' confidence in the sustained growth of the North American and even global markets, and also sig...

    2024-07-04
    查看翻译