EvolvOptic has been selected to fabricate prototype lightweight mirror components for evaluation by the University of ...
In high-intensity laser–matter interactions, including laser-induced particle acceleration, physicists generally want to work ...
Interesting Engineering on MSN
Billion-times more efficient nuclear fusion could be unlocked with low-frequency lasers
While a single X-ray photon is more energetic, low-frequency laser fields allow for a multi-photon interaction. During a ...
Muons are unstable subatomic particles that spontaneously and rapidly transform into other particles via a process known as ...
The National Science Foundation (NSF) has awarded the University of Rochester nearly $18 million over three years to design and prototype key technologies for EP-OPAL, a new facility dedicated to the ...
Intense Laser and Nuclear FusionIn a collaborative study, Assistant Professor Jintao Qi (Shenzhen Technology University), Professor Zhaoyan Zhou ...
A school gym-sized facility tucked away at the University of Michigan is quietly pushing the boundaries of what lasers can do. Known as ZEUS—short for Zettawatt Equivalent Ultrashort laser pulse ...
The continuous development of bright, stable and highly coherent high-energy light sources is a propellant to the fields of material science, biomedical imaging, ultrafast spectroscopy, and industrial ...
In a few picoseconds (trillionths of a second), a small, thin piece of copper momentarily becomes dense plasma, specifically a state called warm dense matter, warm being a relative term – the metal is ...
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