Türeci Hakan E, Ge Li, Rotter Stefan, Stone A Douglas
Institute of Quantum Electronics, Eidgenössische Technische Hochschule (ETH) Zurich, 8093 Zurich, Switzerland.
Science. 2008 May 2;320(5876):643-6. doi: 10.1126/science.1155311.
Unlike conventional lasers, diffusive random lasers (DRLs) have no resonator to trap light and no high-Q resonances to support lasing. Because of this lack of sharp resonances, the DRL has presented a challenge to conventional laser theory. We present a theory able to treat the DRL rigorously and provide results on the lasing spectra, internal fields, and output intensities of DRLs. Typically DRLs are highly multimode lasers, emitting light at a number of wavelengths. We show that the modal interactions through the gain medium in such lasers are extremely strong and lead to a uniformly spaced frequency spectrum, in agreement with recent experimental observations.
与传统激光器不同,扩散随机激光器(DRL)没有用于捕获光的谐振器,也没有支持激光发射的高Q共振。由于缺乏尖锐的共振,DRL对传统激光理论提出了挑战。我们提出了一种能够严格处理DRL的理论,并给出了DRL的激光光谱、内部场和输出强度的结果。通常,DRL是高度多模激光器,在多个波长下发射光。我们表明,此类激光器中通过增益介质的模式相互作用极其强烈,并导致频谱均匀间隔,这与最近的实验观察结果一致。