国产热热热精品,亚洲视频久久】日韩,三级婷婷在线久久,99人妻精品视频,精品九热人人肉肉在线,AV东京热一区二区,91po在线视频观看,久久激情宗合,青青草黄色手机视频

Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

New crystal advances vacuum UV laser

By XU NUO | China Daily | Updated: 2026-02-12 09:30
Share
Share - WeChat

In a major leap for precision technology, a Chinese research team has successfully developed a high-performance crystal that allows lasers to reach deeper into the ultraviolet spectrum than ever before.

This new material, known as ammonium fluorooxoborate or ABF, represents a significant victory in a decade-long quest to power the next generation of advanced manufacturing and scientific discovery.

The breakthrough, led by Pan Shilie, director at the Xinjiang Technical Institute of Physics and Chemistry, was recently published in the journal Nature. It solves a long-standing puzzle in physics — how to create a laser that is not only incredibly precise but also powerful and stable enough for industrial use. By reaching a record-breaking wavelength of 158.9 nanometers, this crystal allows scientists to produce a "vacuum ultraviolet" laser that functions like a microscopic scalpel of unparalleled sharpness.

For decades, this specialized field was dominated by a different Chinese-invented crystal called KBBF.

But in recent years, as practical demands continue to evolve and grow, there is a growing need for crystals with even better performance.

Pan's team spent over a decade refining their equipment and chemical processes to overcome the "growth barrier". Their persistence paid off with the creation of centimeter-sized ABF crystals, which are both durable and large enough to use in high-powered industrial machines.

The implications of this discovery extend far beyond the laboratory. In the world of high-tech manufacturing, the shorter the wavelength of a laser, the finer the detail it can carve. This makes the ABF crystal a vital tool for the semiconductor industry, where it can be used to etch or inspect the microscopic circuits on the chips that power everything from smartphones to artificial intelligence technologies.

Beyond electronics, the research team believes this technology will become a cornerstone of aerospace engineering and medical device production. Because the laser is so precise, it can perform ultrafine surface treatments on delicate components used in satellites or surgical implants.

Pan said the crystal also holds the potential to unlock mysteries in frontier science, such as the hidden mechanisms of superconductivity.

By securing this new material, China reinforces its position at the forefront of a niche but strategically vital industry. As the Xinjiang institute moves toward stabilizing large-scale production, the focus now shifts to integrating these "super crystals" into compact, low-cost laser systems that could soon become standard equipment in high-end factories around the world.

Top
BACK TO THE TOP
English
Copyright 1994 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
辽宁省| 西吉县| 盐源县| 保德县| 玛沁县| 顺义区| 永济市| 姜堰市| 许昌市| 韶山市| 东兰县| 安岳县| 札达县| 嘉黎县| 阿坝县| 巴南区| 郧西县| 秭归县| 新乡县| 峡江县| 临泉县| 海伦市| 苏尼特右旗| 铜梁县| 驻马店市| 巫山县| 鹿邑县| 龙岩市| 嘉兴市| 成安县| 革吉县| 通许县| 鸡西市| 堆龙德庆县| 麻江县| 德安县| 温宿县| 湖南省| 汾阳市| 中江县| 临江市|