Русский

New and Strongest Laser Born in the United States

163
2025-05-28 11:16:45
Посмотреть перевод

The ZEUS laser at the University of Michigan recently achieved a breakthrough of doubling the peak power of the strongest laser in the United States through its first 2 quadrillion watt experiment. Although this instantaneous power only lasts for 25 attosecond (one billionth of a second), it exceeds the total power of the global power grid by more than a hundred times.

Karl Krushelnick, director of the G é rard Mourou Ultrafast Optics Science Center, which is affiliated with ZEUS, said, "This marks the official entry of high field strength science in the United States into unknown territories." In addition to plasma and quantum physics research, the facility's achievements will also benefit eight major fields such as healthcare and national security. As an open research platform, ZEUS has attracted 58 scientists from 22 institutions worldwide to submit experimental plans.

Professor Franklin Dollar, the leader of the first 20 quadrillion watt experiment at the University of California, Irvine, explained that "the uniqueness of ZEUS lies in its ability to decompose lasers into multiple independent light sources." His team is working to generate electron beam energy equivalent to that of a hundred meter particle accelerator, which will be 5-10 times the historical record of the facility.

John Nees (left) and laser engineer Paul Campbell (right) are working in target area 1, where the first 2 quadrillion watt user experiment will be conducted. ZEUS is now the most powerful laser in the United States

The core of the experiment lies in the innovative design of a dual laser collaborative system: one beam constructs a guiding channel, and the other beam achieves electron acceleration. Anatoly Maksimchuk, the chief engineer of the project, revealed that the team has extended the length of the helium target chamber to create a more persistent "wake field acceleration" effect of laser pulses in the plasma - when electrons chase after the decelerating laser pulses, it is like a surfer closely following the wake of a speedboat, gaining sustained kinetic acceleration.

Later this year, ZEUS will witness its iconic experiment: the collision of accelerated electrons with reverse laser pulses. In the electronic reference frame, a 3 quadrillion watt laser is equivalent to a 10 quadrillion watt pulse, which is the origin of the name "Zeva equivalent ultra short pulse system". Vyacheslav Lukin, Director of the Physics Department at NSF, pointed out that this breakthrough will drive innovation in medical technologies such as cancer treatment.

Inside this facility, which is only the size of a sports arena, there are multiple black technologies hidden: a 30 centimeter diameter titanium sapphire crystal serves as the core amplifier, and the global stock is few and far between; The pulse compression technology with a thickness of 8 microns (less than 1/10 of printing paper) breaks through the limit of energy density. John Nees, the chief engineer of the project, emphasized that the flexibility of medium-sized facilities enables them to quickly respond to new research ideas.

The upgrade path from 300 terawatts to 30 quadrillion watts is full of challenges: the titanium sapphire crystal that took four and a half years to build, and the carbon deposition problem caused by molecular residues in the vacuum chamber, have all made the team walk on thin ice. Since its launch in October 2023, ZEUS has completed 11 cutting-edge experiments and will continue to upgrade towards full power in the coming year. As NSF has stated, this' national research heavyweight 'is reclaiming America's dominant position in the field of strong lasers.

Source: Yangtze River Delta Laser Alliance

Связанные рекомендации
  • Molecular orientation is key: a new perspective on revealing electronic behavior using two-photon emission spectroscopy

    Organic electronics has aroused great interest in academia and industry due to its potential applications in OLEDs and organic solar cells, with advantages such as lightweight design, flexibility, and cost-effectiveness. These devices are made by depositing organic molecular thin films onto a substrate that serves as electrodes and exerting their effects by controlling electron transfer between th...

    2024-03-19
    Посмотреть перевод
  • Progress has been made in the corrosion mechanism of alkali aluminum phosphate glass at Shanghai Optics and Machinery Institute

    Recently, the Advanced Laser and Optoelectronic Functional Materials Department of the Shanghai Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, has made new progress in the corrosion mechanism of alkali aluminophosphate glass. The research findings were published in The Journal of Physical Chemistry C under the title "Formation Mechanism of Crystal Phase during Corrosion ...

    2024-07-10
    Посмотреть перевод
  • The new chip opens the door to artificial intelligence computing at the speed of light

    Engineers at the University of Pennsylvania have developed a new chip that uses light waves instead of electricity to perform complex mathematical operations necessary for training artificial intelligence. This chip has the potential to fundamentally accelerate the processing speed of computers while reducing their energy consumption.The design of a silicon photonic chip was the first to combine t...

    2024-02-18
    Посмотреть перевод
  • TAU Systems upgrades the University of Texas desktop laser to a peak power of 40 terawatts

    TAU Systems, a manufacturer of ultra fast compact laser plasma accelerators, announced today that it has successfully upgraded the existing desktop terawatt laser (UT 3) at the University of Texas to a new and improved performance that provides power for compact particle accelerators. The upgraded UT 3 driver laser can now generate ultra short pulses with a peak power of 40 terawatts.This upgrade ...

    2023-08-21
    Посмотреть перевод
  • Tower and Fortsense have announced the launch of their highly advanced 3D imager for LiDAR

    Recently, Gaota Semiconductor announced the successful development of an advanced 3D imager based on dToF technology for LiDAR applications. The newly developed product FL6031 is based on Tower's 65nm Stacked BSI CIS platform and has pixel level hybrid bonding function. It is the first in a series of products aimed at meeting the needs of numerous deep sensing applications in the automotive, consu...

    2023-09-14
    Посмотреть перевод