- データがありません
日本語
- 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
Researchers generate super-fast electrons with table-top laser systems. From phys.org.
Researchers create faster and cheaper way to print tiny metal structures with light. From phys.org.
Ultrafast laser technology could offer improved cancer treatment. From phys.org.
Raman amplification at 2.2 μm in silicon core fibers with prospects for extended mid-infrared source generation. From phys.org.
Researchers use multiple lasers to create reproducible coherent light structures at wavelength level
Using lasers to bond semiconductor electronics components. From phys.org.
Deflecting lightning with a laser lightning rod. From phys.org.
Development of high-time-resolution measurement of electron temperature and density in a magnetically confined plasma
Space lasers have unearthed plethora of climate data over the years. From phys.org.
Why Laser Technology Is a Good Automation Tool for Traceability
Scientists build high power cladding-pumped Raman fiber laser at 1.2 μm waveband. From phys.org.
Small solar flares in large laser bodies. From phys.org.
Cutting Reflective Metals – Overcoming Issues with Laser Cutting
5 COMMON ISSUES WITH LASER CUTTING AND HOW TO AVOID THEM
Measuring electrons from magnetically driven reconnection using lasers and aluminum foil. From phys.org.
New technique accurately measures how 2D materials expand when heated.pdf
Laser-focused look at spinning electrons shatters world record for precision. From phys.org.
ESA gives go-ahead for flagship gravitational-wave observatory in space. From phys.org.