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AZoOptics
5 小时
Graphene Breakthrough: SEOULTECH’s Laser Technology Unveils Damage-Free Ultrathin ...
Recently researchers from SEOULTECH have pioneered a graphene-based laser lift-off technique that prevents damage while ...
1 天
Graphene technique improves ultrathin film manufacturing for flexible electronics
As the demand for thinner, lighter, and more flexible electronic devices grows, the need for advanced manufacturing processes ...
Semiconductor Engineering
3 天
Research Bits: Jan. 7
Deep UV microLED for maskless lithography; avalanching nanoparticles for optical computing; Probabilistic computing with stochastic spintronics.
Future Market Insights
3 天
Global Optical Films Market is Expected to Generate USD 35,455.1 Million by 2032: Future ...
Optical films, thin layers predominantly used for applications such as antireflection coatings for camera lenses and cold ...
insideHPC
3 天
LLNL to Lead Research on Advancing Extreme Ultraviolet Lithography
EUV, extreme ultraviolet lithography, is nearly completely associated with the Dutch company ASML, the only maker of EUV ...
来自MSN
4 天
American lab is developing a BAT laser that could enable 'beyond EUV' lithography, provide ...
The LLNL-led initiative will evaluate the Big Aperture Thulium (BAT) laser technology to enhance EUV source efficiency by ...
4 天
American lab is developing a BAT laser that could enable 'beyond EUV' lithography
The Lawrence Livermore National Laboratory is working on a petawatt-class thulium laser that is said to be 10 times more ...
Compoundsemiconductor.net
7 天
Precursor modulation enhances DUV LED efficiency
Researchers from Wuhan University in China have reported a feasible precursor modulation strategy to grow the p-Al 0.8 Ga 0.2 ...
Compoundsemiconductor.net
9 天
HKUST team develops DUV microLED chips for lithography
A team from Hong Kong University of Science and Technology (HKUST) has developed a deep-ultraviolet (UVC) microLED display ...
SciTech Daily
20 天
Revolutionizing Quantum Tech: Palm-Sized Lasers Break Lab Boundaries
Andrei Isichenko holds the ultra-high-quality ring resonator (left), which can help turn the “coarse” light from a commercially available Fabry-Perot laser diode (right) into a low linewidth laser.
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