- No Data
English
- English
- 简体中文
- 繁体中文
- Français
- Русский
- Italiano
- 日本語
- 한국어
- Português
- Deutsch
- Español
- Türkçe
- Ελληνικά
- Nederlands
- Tiếng Việt
- Polski
Double-pulse LIBS technology provides environmentally friendly analysis of deep-sea materials. From phys.org.
NASA's CloudSat ends mission peering into the heart of clouds. From phys.org.
Creating vortices in a superfluid made of light. From phys.org.
Researchers identify new method to boost laser processing resolution. From phys.org.
NASA's new experimental antenna tracks deep space laser. From phys.org.
How a cyanobacterium manages iron scarcity makes it the most successful photosynthetic organism on Earth. From phys.org.
Exploring the ultrasmall and ultrafast through advances in attosecond science. From phys.org.
Electron vortices in graphene detected for the first time. From phys.org.
Physicists arrange atoms in close proximity, paving way for exploring exotic states of matter. From phys.org.
Making light 'feel' a magnetic field like an electron would. From phys.org.
Study shows optical excitation of hot carriers enables ultrafast dynamic control of nanoscale plasmons. From phys.org.
How NASA uses simple technology to track lunar missions. From phys.org.
Transferring laser-induced graphene at extremely low temperatures for ultrathin bioelectronics. From phys.org.
New method for creating transparent magnetic materials using laser heating. From phys.org.
Laser imaging could offer early detection for at-risk artwork. From phys.org.
Superradiant atoms could push the boundaries of how precisely time can be measured. From phys.org.
Replacing bone saws with smart lasers. From phys.org.
Laser excitation of Th-229 nucleus: New findings suggest classical quantum physics and nuclear physics can be combined. From phys.org.
First operation of a two-color mode in an infrared free-electron laser. From phys.org.