激光 Laser




激光(英语:Light Amplification by Stimulated Emission of Radiation,缩写为LASER,或简称为laser;字面意思为“辐射的光放大”),又称镭射、雷射,指通过辐射而产生,放大的光。特点包括发散度极小,亮度(功率)可以达到很高等。产生激光需要“激发来源”,“增益介质”,“共振结构”这三个要素。
单词 | Coherent radiation |
释义 |
Coherent radiation
中文百科
激光 Laser(重定向自Coherent radiation)
![]() ![]() ![]() ![]() 激光(英语:Light Amplification by Stimulated Emission of Radiation,缩写为LASER,或简称为laser;字面意思为“辐射的光放大”),又称镭射、雷射,指通过辐射而产生,放大的光。特点包括发散度极小,亮度(功率)可以达到很高等。产生激光需要“激发来源”,“增益介质”,“共振结构”这三个要素。
英语百科
Laser 激光(重定向自Coherent radiation)
![]() ![]() ![]() ![]() A laser is a device that emits light through a process of optical amplification based on the stimulated emission of electromagnetic radiation. The term "laser" originated as an acronym for "light amplification by stimulated emission of radiation". The first laser was built in 1960 by Theodore H. Maiman at Hughes Research Laboratories, based on theoretical work by Charles Hard Townes and Arthur Leonard Schawlow. A laser differs from other sources of light in that it emits light coherently. Spatial coherence allows a laser to be focused to a tight spot, enabling applications such as laser cutting and lithography. Spatial coherence also allows a laser beam to stay narrow over great distances (collimation), enabling applications such as laser pointers. Lasers can also have high temporal coherence, which allows them to emit light with a very narrow spectrum, i.e., they can emit a single color of light. Temporal coherence can be used to produce pulses of light as short as a femtosecond. |
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