Ultra-intense ultrashort lasers have a wide-ranging scope of applications, encompassing basic physics, national security, industrial service, and health care. In basic physics, such lasers have become ...
Muons are constantly being created as cosmic rays collide with molecules in Earth's upper atmosphere. With their ability to ...
Scientists have developed a groundbreaking technique called RAVEN that can capture the full complexity of an ultra-intense laser pulse in a single shot—something previously thought nearly impossible.
Researchers show that the most robust single-mode bound-state-in-the-continuum lasers operate slightly before the exact BIC ...
The National Science Foundation has awarded a round of funding toward a total of $13.7 million to advance the development of the world’s most powerful laser into its final design phase. The NSF ...
The 2018 Nobel Prize in Physics goes to innovators in laser physics responsible for optical tweezers and high-intensity, ultrashort optical pulses. Stretchy genes. Half of the 2018 physics Nobel Prize ...
Researchers use a laser to excite and precisely measure a long-sought exotic nuclear state, paving the way for precise timekeeping and ultrasensitive quantum sensing. Figure 2: The precision of ...
Scientists have taken lasers beyond light and into the realm of sound, creating a breakthrough “phonon laser” that manipulates tiny vibrations at the quantum level. By dramatically reducing noise in ...
Gisela Eckhardt was one of the early pioneers in laser physics, discovering the principle behind the Raman laser in 1962. Valdas Pasiskevicius, Richard Mildren and David Burman tell the largely ...
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