精品1_亚洲第一综合_午夜精品久久久久久毛片_精品国产一区二区三区成人影院_中文字幕免费播放_亚洲精品一区二区三区在线看

Low-Energy Laser Pulse Generates Relativistic Electron Beams

source:photonics

  release:Nick

keywords: Low-Energy Laser; Laser Pulse

Time:2017-08-26

COLLEGE PARK, Md., Aug. 23, 2017 — Relativistic electrons driven by low-energy, ultrashort mid-infrared (MIR) laser pulses have been demonstrated for the first time, according to researchers. Many applications could use a lower energy and higher repetition rate accelerated beam, such as rapid-scan imaging for medical, scientific and security purposes. 

“We’re trying to develop laser-driven accelerators that are extremely compact and have a high repetition rate,” said professor Howard Milchberg, a professor of physics and electrical engineering at the University of Maryland. “That means using as low a laser pulse energy as possible to generate relativistic electrons.” 

Compared to prior experiments, the long-driver-wavelength low-energy femtosecond laser pulses used in this project resulted in easy access to what is called the “critical density” regime. Because the critical density varies inversely as the square of the laser wavelength, gas targets used for MIR laser pulses can be up to 100 times less dense than those used in the visible and NIR, making them far less difficult to engineer. 

“When a few-millijoule femtosecond mid-IR laser pulses are focused by a curved mirror into a hydrogen gas jet — a stream of hydrogen puffing out of a nozzle — a collimated pulse of relativistic electrons beams out the other side of the jet,” said Milchberg. “However, this can't happen unless the laser achieves an extremely high intensity — much higher than achievable by focusing with the curved mirror alone. It does so by relativistic self-focusing in the ionized hydrogen gas so that it collapses to a size much smaller than its focal spot.” 

The value of being in the critical density regime, according to Milchberg, is that it promotes relativistic self-focusing even for low energy laser pulses. This boosted high-intensity interaction generates plasma waves that accelerate some of the electrons from the ionized hydrogen into a forward-directed relativistic beam. 

Experiments demonstrated that electron beams were present for powers such that the characteristic self-focusing length in the plasma was shorter than the gas jet width, showing that electron acceleration cannot occur without relativistic self-focusing. 

Relativistic self-focusing is an extreme example of the process of self-focusing in nonlinear optics, but with 
the added bonus of accelerated relativistic particles generated from the nonlinear medium. Even with only 
20 mJ of MIR laser energy, the laser in these experiments could significantly exceed the threshold for relativistic self-focusing, giving rise to relativistic multifilamentation. The team observed multiple relativistic electron beamlets associated with these filaments. 

The team's findings represent early steps toward the development and application of high repetition rate laser driven accelerators. 

“In particular, long wavelength femtosecond lasers are especially promising, as they can access the relativistic nonlinear regime of free electrons surprisingly easily,” said Milchberg. 

The presentation entitled Laser wakefield acceleration with mid-IR laser pulses will take place at Frontiers in Optics + Laser Science APS/DLS (FIO + LS), an Optical Society event to be held September 17-21, 2017 at the Washington Hilton in Washington, DC.
主站蜘蛛池模板: 麻豆成人av | 亚洲一区二区免费电影 | 亚洲免费精品 | 国产精选视频在线观看 | 日韩av综合网 | 亚洲免费综合 | 国产日韩一区二区 | 黑人猛交 | 成人区精品一区二区 | 黄色三级免费看 | 国产不卡视频 | 精品一区国产 | 国产三级一区二区三区 | 国产精品久久 | 高清一区二区三区 | 久久xx | 毛片6| 久久久com| 国产日韩精品久久 | 九九热免费看 | 可以在线观看av的网站 | 久久久精品网站 | 国产成人精品一区二区在线 | 久久久精| 爱爱视频在线观看 | 精品毛片| 久草在线视频免赞 | 日韩av中文字幕在线 | v天堂福利视频在线观看 | 第一福利视频网站 | 欧美激情网址 | 亚洲精品2 | 中文字幕精品久久久 | 国产69久久精品成人看 | 国产日韩在线视频 | 欧美日韩黄色 | 久久五月天婷婷 | 91精品国产99久久久久久红楼 | 欧美区日韩区 | 久久九 | 亚洲一区二区在线 |